{"id":40,"date":"2023-07-01T08:03:13","date_gmt":"2023-06-30T23:03:13","guid":{"rendered":"https:\/\/c-mng.cwh.hokudai.ac.jp\/nt.sci\/nomura\/?page_id=40"},"modified":"2025-10-15T12:14:23","modified_gmt":"2025-10-15T03:14:23","slug":"publications","status":"publish","type":"page","link":"https:\/\/c-mng.cwh.hokudai.ac.jp\/nt.sci\/nomura\/publications.html","title":{"rendered":"Publications"},"content":{"rendered":"\n

Kosuke Nomura<\/h4>\n\n\n\n
<\/div>\n\n\n\n

Books<\/h3>\n\n\n\n
    \n
  1. Interacting Boson Model from Energy Density Functionals
    <\/strong>Kosuke Nomura
    Springer Tokyo (2013) [link<\/a>]

    <\/li>\n\n\n\n
  2. Recent developments and novel applications of the interacting boson-fermion model<\/strong>
    Kosuke Nomura
    Chap. XI of \u201cChirality and Wobbling in Atomic Nuclei\u201c, CRC Press (2024) [
    link<\/a>]

    <\/li>\n<\/ol>\n\n\n\n

    Peer-reviewed papers<\/h3>\n\n\n\n
      \n
    1. Configuration mixing effects on neutrinoless \u03b2\u03b2<\/strong><\/strong> decay nuclear matrix elements
      <\/strong>Kosuke Nomura
      arXiv: 2508.20323 [nucl-th]<\/a>

      <\/li>\n\n\n\n
    2. Lifetime measurements to investigate \ud835\udefe softness in\u00a0198<\/sup>Pt and\u00a0200<\/sup>Pt<\/strong>
      A. Esmaylzadeh,\u00a0F. von Spee,\u00a0J. Jolie,\u00a0K. Nomura,\u00a0M. Ley,\u00a0C. Fransen,\u00a0A. Blazhev, S. Dantanarayana,\u00a0M. Droste,\u00a0J. Fischer,\u00a0L. Knafla,\u00a0C.-D. Lakenbrink,\u00a0R. Novak,\u00a0and A. Pfeil
      submitted for publication

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    3. Neutrinoless \u03b2\u03b2<\/strong><\/strong> decay in the interacting boson model based on the nuclear energy density functionals
      <\/strong>Kosuke Nomura
      arXiv: 2503.15741 [nucl-th]<\/a>

      <\/li>\n\n\n\n
    4. Mapped\u00a0spdf\u00a0interacting boson model for quadrupole-octupole collective states in nuclei
      <\/strong>Kosuke Nomura
      Phys. Rev. C. 112 (2025) 044307<\/a>

      <\/li>\n\n\n\n
    5. Microscopic determination of the interacting boson-fermion model Hamiltonian from the nuclear energy density functional<\/strong>
      M. Homma, and K. Nomura
      Phys. Lett. B 869 (2025) 139880<\/a>

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    6. Shape transition and shape coexistence in odd-mass nuclei around 100<\/sup>Zr<\/strong>
      Jean-Marc R\u00e9gis, Aaron Pfeil, Jan Jolie, Arwin Esmaylzadeh, Lukas Knafla, Mario Ley, Andreas Harter, V asil, Karayonchev, Ulli K\u00f6ster, Yung Hee Kim, Noam Gavrielov, and Kosuke Nomura
      EPJ Web Conf. 329 (2025) 01007<\/a>

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    7. Quadrupole-octupole coupling and the onset of octupole collectivity<\/strong>
      K. Nomura
      EPJ Web Conf. 329 (2025) 02010<\/a>

      <\/li>\n\n\n\n
    8. Mapped interacting boson model for nuclear structure studies
      <\/strong>Kosuke Nomura
      Eur. Phys. J. 61 (2025) 139<\/a>

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    9. Sensitivity analysis of \u03b2-decay half-life predictions for Ge, As, Zr and Mo nuclei within the mapped interacting boson model
      <\/strong>M. Homma, and K. Nomura
      Phys. Rev. C. 111 (2025) 044302<\/a>

      <\/li>\n\n\n\n
    10. Increasing Octupole Collectivity across the Z=64 Isotopic Chain: B(E3) Values in 150Gd<\/strong>
      S. Pascu, E. Y\u00fcksel, Abhishek, P. Stevenson, G.\u2009H. Bhat, R.\u2009N. Mao, K. Nomura, C. Costache, Z.\u2009P. Li, N. M\u0103rginean, C. Mihai, T. Naz, Zs. Podoly\u00e1k, P.\u2009H. Regan, A.\u2009E. Turturic\u0103, R. Borcea, M. Boromiza, D. Bucurescu, S. C\u0103linescu, C. Clisu, A. Coman, I. Dinescu, S. Doshi, D. Filipescu, N.\u2009M. Florea, A. Gandhi, I. Gheorghe, A. Ionescu, R. Lic\u0103, R. M\u0103rginean, R.\u2009E. Mihai, A. Mitu, N. Nazir, A. Negret, C.\u2009R. Ni\u0163\u0103, E.\u2009B. O\u2019Sullivan, C. Petrone, S.\u2009E. Poulton, J.\u2009A. Sheikh, H.\u2009K. Singh, L. Stan, S. Toma, G. Turturic\u0103, and S. Ujeniuc
      Phys. Rev. Lett. 134 (2025) 092501<\/a>

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    11. Collective excitations in 150Gd<\/strong>
      S. Pascu, E. Y\u00fcksel, Abhishek, P. Stevenson, G.\u2009H. Bhat, R.\u2009N. Mao, K. Nomura, C. Costache, Z.\u2009P. Li, N. M\u0103rginean, C. Mihai, T. Naz, Zs. Podoly\u00e1k, P.\u2009H. Regan, A.\u2009E. Turturic\u0103, R. Borcea, M. Boromiza, D. Bucurescu, S. C\u0103linescu, C. Clisu, A. Coman, I. Dinescu, S. Doshi, D. Filipescu, N.\u2009M. Florea, A. Gandhi, I. Gheorghe, A. Ionescu, R. Lic\u0103, R. M\u0103rginean, R.\u2009E. Mihai, A. Mitu, N. Nazir, A. Negret, C.\u2009R. Ni\u0163\u0103, E.\u2009B. O\u2019Sullivan, C. Petrone, S.\u2009E. Poulton, J.\u2009A. Sheikh, H.\u2009K. Singh, L. Stan, S. Toma, G. Turturic\u0103, and S. Ujeniuc
      Phys. Rev. C. 111 (2025) 034302<\/a>

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    12. Nuclear size, electric monopole transitions, and the location of 0+2 states<\/strong>
      B. Maheshwari, K. Nomura, and P. Van Isacker
      Phys. Rev. C 111 (2025) 024317<\/a>

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    13. Quadrupole-hexadecapole correlations in neutron-rich samarium and gadolinium isotopes<\/strong>
      L. Lotina, K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 111 (2025) 024301<\/a>

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    14. Role of octupole shape degree of freedom in neutron-rich xenon isotopes<\/strong>
      K. Nomura
      Phys. Rev. C 110 (2024) 064306<\/a>

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    15. Shape transition and coexistence in Te isotopes studied with the quadrupole collective Hamiltonian based on a relativistic energy density functional<\/strong>
      K. Suzuki, and K. Nomura
      Phys. Rev. C 110 (2024) 064304<\/a>

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    16. Collectivity at the prolate-oblate transition: the 2+<\/sup>1<\/sub> lifetime of 190<\/sup>W<\/strong>
      E. Sahin, V. Werner, A.K. Mistrya, M. Rudigier, K. Nomura, J. Jolie, N. Pietralla, P.H. Regan, G. Aggez, H.M. Albers, U. Ahmed, \u00d6. Aktas, A. Algora, S. Alhomaidhi, C. Appleton, T. Ar\u0131c\u0131, M. Armstrong, A. Banerjee, J. Benito, G. Benzoni, A. Blazhev, P. Boutachkov, A. M. Bruce, B. Cederwall, M. M. R. Chishti, M. L. Cortes, F. Crespi, B. Das, T. Davinson, T. Dickel, M. Doncel, A. Ertoprak, A. Esmaylzadeh, L. M. Fraile, E. R. Gamba, J. Gerl, M. Gorska, J. Has, E. Haettner, O. Hall, H. Heggen, C. Hornung, N. Hubbard, S. Jazrawi, P. R. John, C. E. Jones, V. Karayonchev, E. Kazantseva, R. Kern, L. Knafla, I. Kojouharov, P. Koseoglou, G. Kosir, D. Kostyleva, N. Kurz, N. Kuzminchuk, M. Llanos-Exposito, R. Lozeva, D. Mengoni, T. J. Mertzimekis, M. Mikolajczuk, A. I. Morales, I. Mukha, J. R. Murias, B. S. Nara-Singh, S. E. A. Orrigo, J. Pellumaj, S. Pelonis, S. Pietri, S. Pigliapoco, Zs. Podolyak, M. Polettini, K. Rezynkina, H. A. R\u00f6sch, H. Schaffner, Ch. Scheidenberger, L. Sexton, P.-A. S\u00f6derstr\u00f6m, Y. K. Tanaka, J. J. Valiente- Dobon, P. Vasileiou, J. Vasiljevic, J. Vesic, H. Weick, J. Wiederhold, A. Yaneva, G. Zhang, J. Zhao, A. Zyriliou
      Phys. Lett B 857 (2024) 138976<\/a>

      <\/li>\n\n\n\n
    17. Effects of pairing strength on the nuclear structure and double-\u03b2 decay predictions within the mapped interacting boson model<\/strong>
      Kosuke Nomura
      Phys. Rev. C 110 (2024) 024304<\/a>

      <\/li>\n\n\n\n
    18. Weakening of N=28 shell gap and the nature of 0+<\/sup>2<\/sub> states<\/strong>
      Bhoomika Maheshwari, and Kosuke Nomura
      <\/a>J. Phys. G: Nucl. Part. Phys. 51 (2024) 095101<\/a>

      <\/li>\n\n\n\n
    19. Parameter dependence of the \u03b2-decay properties of neutron-rich Zr isotopes within the interacting boson model<\/strong>
      M. Homma, and K. Nomura
      <\/a>Phys. Rev. C 110 (2024) 014303<\/a>

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    20. Microscopic description of hexadecapole collectivity in even-even rare-earth nuclei around N=90<\/strong>
      L. Lotina, and K. Nomura
      Phys. Rev. C 109 (2024) 044324<\/a>
      <\/a>
      <\/li>\n\n\n\n
    21. Low-energy structure and \u03b2-decay properties of neutron-rich nuclei in the region of a shape phase transition<\/strong>
      Kosuke Nomura
      Phys. Rev. C 109 (2024) 034319<\/a>

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    22. Impacts of hexadecapole deformations on the collective energy spectra of axially deformed nuclei<\/strong>
      L. Lotina, and K. Nomura
      Phys. Rev. C 109<\/strong> (2024) 034304<\/a>

      <\/li>\n\n\n\n
    23. Systematic shell-model study for structure and isomeric states in 200-210<\/sup>Po isotopes<\/strong>
      Sakshi Schukla, Praveen C. Srivastava, Kosuke Nomura, and Larry Zamick
      Nucl. Phys. A 1044<\/strong> (2024) 122842<\/a>

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    24. Investigating the prolate-to-oblate phase shape transition: Lifetime measurements and \u03b3 spectroscopy of the low-lying negative parity structure in 193<\/sup>Os
      <\/strong><\/strong>L. Knafla, K. Nomura, A. Esmaylzadeh, A. Harter, J. Jolie, V. Karayonchev, U. K\u00f6ster, M. Ley, C. Michelagnoli, A. Pfeil, J.-M. R\u00e9gis, and F. von Spee
      Phys. Rev. C 109<\/strong> (2024) 014313<\/a>

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    25. Coulomb excitation of 96<\/sup>Mo<\/strong>
      R. Russell, J. Heery, J. Henderson, C. Hoffman, T. Beck, C. Cousins, P. Farris, A. Gade, S.A. Gillespie, A. Hill, H. Iwasaki, S. Kisyov, A. Kuchera, B. Longfellow, C. M\u00fcller-Gatermann, K. Nomura, E. Rubino, R. Salinas, A. Sanchez, D. Weisshaar, C.Y. Wu, J. Wu
      Phys. Rev. C 108<\/strong> (2023) 064311<\/a>

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    26. Lifetime measurements in 99<\/sup>Nb and 99<\/sup>Zr: Investigation of shape coexistence<\/strong>
      A. Pfeil, K. Nomura, N. Gavrielov, J.-M. R\u00e9gis, U. K\u00f6ster, Y.H. Kim, A. Esmaylzadeh, A. Harter, J. Jolie, L. Knafla, and M. Ley
      Phys. Rev. C 108<\/strong> (2023) 034310<\/a>

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    27. Classical and Bayesian error analysis of the relativistic mean-field model for doubly-magic nuclei<\/strong>
      M. Imbri\u0161ak, and K. Nomura
      Phys. Rev. C 108<\/strong> (2023) 024321<\/a>

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    28. Octupole Deformation in 143,145,146<\/sup>Ba<\/strong>
      N.T. Brewer, E.H. Wang, W.A. Yzaguirre, J.H. Hamilton, K. Nomura, A.V. Ramayya, S.H. Liu, J.K. Hwang, B.M. Musangu, J.M. Eldridge, C.J. Zachary, Y.X. Luo, J.O. Rasmussen, S.J. Zhu, C. Goodin, G.M. Ter- Akopian, A.V. Daniel, and Yu.Ts. Oganessian
      Nucl. Phys. A 1039<\/strong> (2023) 122738<\/a>

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    29. Stability of the manifold boundary approximation method for reductions of nuclear structure models<\/strong>
      M. Imbri\u0161ak, and K. Nomura
      Phys. Rev. C 107<\/strong> (2023) 034304<\/a>

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    30. Microscopic formulation of the interacting boson model for reflection asymmetric nuclei<\/strong>
      Kosuke Nomura
      Invited contribution to the Special Issue “Reflection Asymmetry in Atomic Nuclei”
      Int. J. Mod. Phys. E (2023) 2340001<\/a>

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    31. Investigation of \u03b3-softness: Lifetime measurements in 104,106<\/sup>Ru<\/strong>
      A. Esmaylzadeh, A. Blazhev, K. Nomura, J. Jolie, M. Beckers, R.-B. Gerst, A. Harter, V. Karayonchev, L. Knafla, M. Ley, and F. Spee
      Phys. Rev. C 106<\/strong> (2022) 064323<\/a>

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    32. Overview of Seniorty Isomers<\/strong>
      Bhoomika Maheshwari, and Kosuke Nomura
      Contribution to Special Issue “Selected Papers from Shapes and Symmetries in Nuclei: From Experiment to Theory”
      Symmetry 2022<\/strong>, 14(12), 2680-1-29<\/a>

      <\/li>\n\n\n\n
    33. Collective-model description of shape coexistence and intruder states in cadmium isotopes based on a relativistic energy density functional<\/strong>
      K. Nomura, and K.E. Karakatsanis
      Phys. Rev. C 106<\/strong> (2022) 064317<\/a>

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    34. Simultaneous description of \u03b2 decay and low-lying structure of neutron-rich even- and odd-mass Rh and Pd nuclei<\/strong>
      K. Nomura, L. Lotina, R. Rodr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 106<\/strong> (2022) 064304<\/a>

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    35. Effect of configuration mixing on quadrupole and octupole collective states of transitional nuclei<\/strong>
      Kosuke Nomura
      Phys. Rev. C 106<\/strong> (2022) 024330<\/a>

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    36. Signatures of shape phase transitions in krypton isotopes based on relativistic energy density functionals<\/strong>
      K.E. Karakatsanis, and K. Nomura
      Phys. Rev. C 105<\/strong> (2022) 064310<\/a>

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    37. Octupole correlations in collective excitations of neutron-rich N\u224856 nuclei<\/strong>
      Kosuke Nomura
      Phys. Rev. C 105<\/strong> (2022) 054318<\/a>

      <\/li>\n\n\n\n
    38. \u03b2 decay and evolution of low-lying states in Ge and As nuclei<\/strong>
      Kosuke Nomura
      Phys. Rev. C 105<\/strong> (2022) 044306<\/a>

      <\/li>\n\n\n\n
    39. Two-neutrino double-\u03b2 decay in the mapped interacting boson model<\/strong>
      Kosuke Nomura
      Phys. Rev. C 105<\/strong> (2022) 044301<\/a>

      <\/li>\n\n\n\n
    40. Questioning the wobbling interpretation of low-spin bands in \u03b3-soft nuclei within the interacting boson-fermion model<\/strong>
      K. Nomura, and C.M. Petrache
      Phys. Rev. C 105<\/strong> (2022) 024320<\/a>

      <\/li>\n\n\n\n
    41. Linking partial dynamical symmetry to nuclear energy density functionals<\/strong>
      A. Leviatan, N. Gavrielov, and K. Nomura
      Bulg. J. Phys. 49<\/strong> (2022) 067-077<\/a>

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    42. \u03b3-ray spectroscopy of low-lying yrast and non-yrast states in neutron-rich 94,95,96<\/sup>Kr<\/strong>
      R.-B. Gerst, A. Blazhev, K. Moschner, P. Doornenbal, A. Obertelli, K. Nomura, J.-P. Ebran, S. Hilaire, J. Libert, G. Authelet, H. Baba, D. Calvet, F. Ch\u00e2teau, S. Chen, A. Corsi, A. Delbart, J.-M. Gheller, A. Giganon, A. Gillibert, V. Lapoux, T. Motobayashi, M. Niikura, N. Paul, J.-Y. Rouss\u00e9, H. Sakurai, C. Santamaria, D. Steppenbeck, R. Taniuchi, T. Uesaka, T. Ando, T. Arici, F. Browne, A.M. Bruce, R. Caroll, L. X. Chung, M.L. Cort\u00e9s, M. Dewald, B. Ding, F. Flavigny, S. Franchoo, M. G\u00f3rska, A. Gottardo, J. Jolie, A. Jungclaus, J. Lee, M. Lettmann, B.D. Linh, J. Liu, Z. Liu, C. Lizarazo, S. Momiyama, S. Nagamine, N. Nakatsuka, C.R. Nita, C. Nobs, L. Olivier, R. Orlandi, Z. Patel, Zs. Podoly\u00e1k, M. Rudigier, T. Saito, C. Shand, P.-A. S\u00f6derstr\u00f6m, I. Stefan, V. Vaquero, V. Werner, K. Wimmer, and Z. Xu
      Phys. Rev. C 105<\/strong> (2022) 024302<\/a>

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    43. Lifetime measurements to investigate \u03b3 softness and shape coexistence in 102<\/sup>Mo<\/strong>
      A. Esmaylzadeh, V. Karayonchev, K. Nomura, J. Jolie, M. Beckers, A. Blazhev, A. Dewald, C. Fransen, R.-B. Gerst, G. H\u00e4fner, A. Harter, L. Knafla, M. Ley, L.M. Robledo, R. Rodr\u00edguez-Guzm\u00e1n, and M. Rudigier
      Phys. Rev. C 104<\/strong> (2021) 064314<\/a>

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    44. Quadrupole-octupole coupling and the evolution of collectivity in neutron-deficient Xe, Ba, Ce, and Nd isotopes<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 104<\/strong> (2021) 054320<\/a>

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    45. Quadrupole-octupole collectivity in the Xe, Ba, Ce and Nd isotopic chains described with mean field and beyond approaches<\/strong>
      R. Rodr\u00edguez-Guzm\u00e1n, L.M. Robledo, K. Nomura, and N.C. Hern\u00e1ndez
      J. Phys. G 49<\/strong> (2021) 015101<\/a>

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    46. Evolution of octupole deformation and collectivity in neutron-rich lanthanides<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, L.M. Robledo, J.E. Garc\u00eda-Ramos, and N.C. Hern\u00e1ndez
      Phys. Rev. C 104<\/strong> (2021) 044324<\/a>

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    47. Partial dynamical symmetry from energy density functionals<\/strong>
      K. Nomura, N. Gavrielov, and A. Leviatan
      Phys. Rev. C 104<\/strong> (2021) 044317<\/a>

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    48. Interplay between pairing and triaxial shape degrees of freedom in Os and Pt nuclei<\/strong>
      K. Nomura, D. Vretenar, Z.P. Li, and J. Xiang
      Phys. Rev. C 104<\/strong> (2021) 024323<\/a>

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    49. Coupling of pairing and triaxial shape vibrations in collective states of \u03b3-soft nuclei<\/strong>
      K. Nomura, D. Vretenar, Z.P. Li, and J. Xiang
      Phys. Rev. C 103<\/strong> (2021) 054322<\/a>

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    50. Microscopic description of octupole collective excitations near N=56 and N=88<\/strong>
      K. Nomura, L. Lotina, T. Nik\u0161i\u0107, and D. Vretenar
      Phys. Rev. C 103<\/strong> (2021) 054301<\/a>

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    51. Quadrupole-octupole coupling and the onset of octupole deformation in actinides<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, L.M. Robledo, and J.E. Garc\u00eda-Ramos
      Phys. Rev. C 103<\/strong> (2021) 044311<\/a>

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    52. Octupole correlations in light actinides from the interacting boson model based on the Gogny energy density functional<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, Y.M. Humadi, L.M. Robledo, and J.E. Garc\u00eda-Ramos
      Phys. Rev. C 102<\/strong> (2020) 064326<\/a>

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    53. Prompt Response Function (PRF) of Lifetime Measurement in the 2+ State of 192<\/sup>Os Nuclei Energy Levels from Triple-Gamma Coincidence Techniques<\/strong>
      T. Daniel, S. Kisyov, P. H. Regana, N. Marginean, Zs. Podolyak, R. Marginean, K. Nomura, M. Rudigier, R. Mihai, V. Werner, R. J. Carroll, L. A. Gurgi, A. Oprea, T. Berry, A. Serban, C. R. Nita, C. Sotty, R. Suvaila, A. Turturica, C. Costache, L. Stan, A. Olacel, M. Boromiza, S. Toma, S. J. Gemanam, F. Gbaorun, I. Ochala, E. C. Hemba
      J. Niger. Soc. Phys. Sci. 2<\/strong> (2020) 257<\/a>

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    54. Signatures of octupole shape phase transitions in radioactive nuclei<\/strong>
      K. Nomura
      J. Phys.: Conf. Ser. 1643<\/strong> (2020) 012152<\/a>

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    55. Pairing vibrations in the interacting boson based on density functional theory<\/strong>
      K. Nomura, D. Vretenar, Z.P. Li, and J. Xiang
      Phys. Rev. C 102<\/strong> (2020) 054313<\/a>.

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    56. Shape phase transitions in odd-A Zr isotopes<\/strong>
      K. Nomura, T. Nik\u0161i\u0107, and D. Vretenar
      Phys. Rev. C 102<\/strong> (2020) 034315<\/a>

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    57. \u03b2 decay of even-A nuclei within the interacting boson model based on nuclear density functional theory<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 101<\/strong> (2020) 044318<\/a>

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    58. \u03b2 decay of odd-A nuclei with the interacting boson-fermion model based on the Gogny energy density functional<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 101<\/strong> (2020) 024311<\/a>

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    59. Structure of odd-odd Cs isotopes within the interacting boson-fermion-fermion model based on the Gogny-D1M energy density functional<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 101<\/strong> (2020) 014306<\/a>

      <\/li>\n\n\n\n
    60. Beyond-mean-field boson-fermion description of odd nuclei<\/strong>
      K. Nomura
      Acta Phys. Pol. B 13<\/strong> (2020) 457-464<\/a>

      <\/li>\n\n\n\n
    61. Lifetime measurements and shape coexistence in 97<\/sup>Sr<\/strong>
      A. Esmaylzadeh, J.-M. Regis,Y. H. Kim, U. Koester, J. Jolie, V. Karayonchev, L. Knafla, K. Nomura, L.M. Robledo, and R. Rodr\u00edguez-Guzm\u00e1n
      Phys. Rev. C 100<\/strong> (2019) 064309<\/a>

      <\/li>\n\n\n\n
    62. Shape coexistence in 178<\/sup>Hg<\/strong>
      C. M\u00f6ller-Gatermann, A. Dewald, C. Fransen, K. Auranen, H. Badran, M. Beckers, A. Blazhev, T. Braunroth, D. M. Cullen, G. Fruet, A. Goldkuhle, T. Grahn, P. T. Greenlees, A. Herz\u00e1n, U. Jakobsson, D. Jenkins, J. Jolie, R. Julin, S. Juutinen, J. Konki, M. Leino, J. Litzinger, K. Nomura, J. Pakarinen, P. Peura, M. G. Procter, P. Rahkila, P. Ruotsalainen, M. Sandzelius, J. Sar\u00e9n, C. Scholey, J. Sorri, S. Stolze, M. J. Taylor, J. Uusitalo, and K. O. Zell
      Phys. Rev. C 99<\/strong> (2019) 054325<\/a>

      <\/li>\n\n\n\n
    63. Spectroscopy of odd-odd nuclei within the interacting boson-fermion-fermion model based on the Gogny energy density functional<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 99<\/strong> (2019) 034308<\/a>

      <\/li>\n\n\n\n
    64. Two-neutron transfer reactions and shape phase transitions in the microscopically-formulated interacting boson model<\/strong>
      K. Nomura, and Y. Zhang
      Phys. Rev. C 99<\/strong> (2019) 024324<\/a>

      <\/li>\n\n\n\n
    65. Coexistence and evolution of shapes: mean-field-based interacting boson model<\/strong>
      K. Nomura
      EPJ Web Conf. 223<\/strong> (2019) 01046<\/a>

      <\/li>\n\n\n\n
    66. Beyond-mean-field boson-fermion description of odd-mass nuclei<\/strong>
      K. Nomura
      Nucl. Phys. Rev. 35<\/strong> (2018) 499

      <\/li>\n\n\n\n
    67. Structure of even-even Cadmium isotopes from the beyond-mean-field interacting boson model<\/strong>
      K. Nomura, and J. Jolie
      Phys. Rev. C 98<\/strong> (2018) 024303<\/a> (Editors’ Suggestion)

      <\/li>\n\n\n\n
    68. Prolate-to-oblate shape phase transitions in neutron-rich odd-mass nuclei<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 97<\/strong> (2018) 064314<\/a>

      <\/li>\n\n\n\n
    69. Description of neutron-rich odd-mass krypton isotopes within the interacting boson-fermion model based on the Gogny energy density functional<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 97<\/strong> (2018) 064313<\/a>

      <\/li>\n\n\n\n
    70. Signatures of octupole correlations in neutron-rich odd-mass barium isotopes<\/strong>
      K. Nomura, T. Nik\u0161i\u0107, and D. Vretenar
      Phys. Rev. C 97<\/strong> (2018) 024317<\/a>

      <\/li>\n\n\n\n
    71. Shape transitions in odd-mass \u03b3-soft nuclei within the interacting boson-fermion model based on the Gogny energy density functional<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 96<\/strong> (2017) 016316<\/a>

      <\/li>\n\n\n\n
    72. Neutron-proton pairing and double-\u03b2 decay in the interacting boson model<\/strong>
      P. Van Isacker, J. Engel, and K. Nomura
      Phys. Rev. C 96<\/strong> (2017) 064305<\/a>

      <\/li>\n\n\n\n
    73. Structure of krypton isotopes within the interacting boson model derived from the Gogny energy density functional<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, Y. M. Humadi, L.M. Robledo, and H. Abusara
      Phys. Rev. C 96<\/strong> (2017) 034310<\/a>

      <\/li>\n\n\n\n
    74. Description of odd-mass nuclei within the interacting boson-fermion model based on the Gogny energy density functional<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 96<\/strong> (2017) 014314<\/a>

      <\/li>\n\n\n\n
    75. Shape-phase transitions in odd-mass \u03b3-soft nuclei with mass A\u2248130<\/strong>
      K. Nomura, T. Nik\u0161i\u0107, and D. Vretenar
      Phys. Rev. C 96<\/strong> (2017) 014304<\/a>

      <\/li>\n\n\n\n
    76. Structural evolution in germanium and selenium nuclei within the mapped interacting boson model based on the Gogny energy density functional<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 95<\/strong> (2017) 064310<\/a>

      <\/li>\n\n\n\n
    77. \u03b3-ray spectroscopy of low-lying excited states and shape competition in 194<\/sup>Os<\/strong>
      T. Daniel, S. Kisyov, P. H. Regan, N. Marginean, Zs. Podoly\u00e1k, R. Marginean, K. Nomura, M. Rudigier, R. Mihai, V. Werner, R. J. Carroll, L. A. Gurgi, A. Oprea, T. Berry, A. Serban, C. Nita, C. Sotty, R. Suvaila, A. Turturica, C. Costache, L. Stan, A. Olacel, M. Boromiza, and S. Toma,
      Phys. Rev. C 95<\/strong> (2017) 024328<\/a>

      <\/li>\n\n\n\n
    78. Signatures of shape phase transitions in odd-mass nuclei<\/strong>
      K. Nomura, T. Nik\u0161i\u0107, and D. Vretenar
      Phys. Rev. C 94<\/strong> (2016) 064310<\/a>

      <\/li>\n\n\n\n
    79. Excited states and reduced transition probabilities in 168<\/sup>Os<\/strong>
      T. Grahn, S. Stolze, D. T. Joss, R. D. Page, B. Saygi, D. O’Donnell, M. Akmali, K. Andgren, L. Bianco, D. M. Cullen, A. Dewald, P. T. Greenlees, K. Heyde, H. Iwasaki, U. Jakobsson, P. Jones, D. S. Judson, R. Julin, S. Juutinen, S. Ketelhut, M. Leino, N. Lumley, P. J. R. Mason, O. M\u00f6ller, K. Nomura, M. Nyman, A. Petts, P. Peura, N. Pietralla, Th. Pissulla, P. Rahkila, P. J. Sapple, J. Sar\u00e9n, C. Scholey, J. Simpson, J. Sorri, P. D. Stevenson, J. Uusitalo, H. Watkins, and J.L. Wood
      Phys. Rev. C 94<\/strong> (2016) 044327<\/a>

      <\/li>\n\n\n\n
    80. Structural evolution in A\u2248100 nuclei within the mapped interacting boson model based on the Gogny energy density functional<\/strong>
      K. Nomura, odr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 94<\/strong> (2016) 044314<\/a>

      <\/li>\n\n\n\n
    81. Beyond-mean-field boson-fermion model for odd-mass nuclei<\/strong>
      K. Nomura, T. Nik\u0161i\u0107, and D. Vretenar
      Phys. Rev. C 93<\/strong> (2016) 054305<\/a>

      <\/li>\n\n\n\n
    82. Nuclear Structure of 96,98<\/sup>Mo: Shape coexistence and mixed-symmetry states<\/strong>
      T. Thomas, V. Werner, J. Jolie, K. Nomura, T. Ahn, N. Cooper, H. Duckwitz, A. Fitzler, C. Fransen, A. Gade, M. Hinton, G. Illie, K. Jessen, A. Linnemann, P. Petkov, N. Pietralla, and D. Radeck
      Nucl. Phys. A 947<\/strong> (2016) 203-233<\/a>

      <\/li>\n\n\n\n
    83. Shape coexistence in the microscopically guided interacting boson model<\/strong>
      K. Nomura, T. Otsuka, and P. Van Isacker
      J. Phys. G 43<\/strong> (2016) 024008<\/a>
      (Invited review in “Focus Issue on Shape Coexistence in Nuclei”)

      <\/li>\n\n\n\n
    84. Microscopic analysis of pear-shaped nuclei<\/strong>
      K. Nomura
      AIP Conf. Proc. 1681<\/strong> (2015) 040009<\/a>

      <\/li>\n\n\n\n
    85. Microscopic and Algebraic Theory for Complex Nuclear Shapes and Dynamics<\/strong>
      K. Nomura
      Bulg. J. Phys. 42<\/strong> (2015) 344<\/a>

      <\/li>\n\n\n\n
    86. Spectroscopy of quadrupole and octupole states in rare-earth nuclei from a Gogny force<\/strong>
      K. Nomura, Rodr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 92<\/strong> (2015) 014312<\/a>

      <\/li>\n\n\n\n
    87. Evolution of E2 transition strength in deformed hafnium isotopes from new measurements on 172<\/sup>Hf, 174<\/sup>Hf, and 176<\/sup>Hf<\/strong>
      M. Rudigier, K. Nomura, M. Dannhoff, R.-B. Gerst, J. Jolie, N. Saed-Samii, S. Stegemann, J.-M. Regis, L.M. Robledo, R. Rodr\u00edguez-Guzm\u00e1n, A. Blazhev, Ch. Fransen, N. Warr, K.O. Zell
      Phys. Rev. C 91<\/strong> (2015) 044301<\/a>

      <\/li>\n\n\n\n
    88. Advances in the Microscopic Study of the Interacting Boson Model<\/strong>
      K. Nomura
      JPS Conf. Proc. 6<\/strong> (2015) 020012<\/a>

      <\/li>\n\n\n\n
    89. Microscopic analysis of quadrupole-octupole shape evolution<\/strong>
      K. Nomura
      EPJ Web Conf. 93<\/strong> (2015) 01007<\/a>

      <\/li>\n\n\n\n
    90. Microscopic description of the octupole phase-phase transitions in light actinide and rare-earth nuclei<\/strong>
      K. Nomura, D. Vretenar, T. Nik\u0161i\u0107, and Bing-Nan Lu
      Phys. Rev. C 89<\/strong> (2014) 024312<\/a> (Editors’ Suggestion)

      <\/li>\n\n\n\n
    91. Evidence for shape coexistence in 98<\/sup>Mo<\/strong>
      T. Thomas, K. Nomura, V. Werner, T. Ahn, N. Cooper, H. Duckwitz, M. Hinton, G. Illie, J. Jolie, P. Petkov, and D. Radeck
      Phys. Rev. C 88<\/strong> (2013) 044305<\/a>

      <\/li>\n\n\n\n
    92. Microscopic analysis of the octupole phase transition in Th isotopes<\/strong>
      K. Nomura, D. Vretenar, and B.-N. Lu
      Phys. Rev. C 88<\/strong> (2013) 021303(R)<\/a>

      <\/li>\n\n\n\n
    93. Interacting boson model with energy density functionals<\/strong>
      K. Nomura
      J. Phys.: Conf. Ser. 445<\/strong> (2013) 012015<\/a>

      <\/li>\n\n\n\n
    94. Interacting Boson Model from Mean-Field Theory: Application to Triaxial Nucleis<\/strong>
      K. Nomura
      World Scientific (2013) 121\u2013126<\/a>

      <\/li>\n\n\n\n
    95. Shape evolution and the role of intruder configurations in Hg isotopes within the interacting boson model based on a Gogny energy density functional<\/strong>
      K. Nomura, Rodr\u00edguez-Guzm\u00e1n, and L.M. Robledo
      Phys. Rev. C 87<\/strong> (2013) 064313<\/a>

      <\/li>\n\n\n\n
    96. Shape dynamics in neutron-rich Kr isotopes: Coulomb excitation of 92<\/sup>Kr, 94<\/sup>Kr, and 96<\/sup>Kr<\/strong>
      M. Albers, K. Nomura, N. Warr, A. Blazhev, J. Jolie, D. M\u00fccher, B. Bastin, C. Bauer, C. Bernards, L. Bettermann, V. Bildstein, J. Butterworth, M. Cappellazzo, J. Cederk\u00e4ll, D. Cline, I. Darby, S. Das Gupta, J. M. Daugas, T. Davinson, H. De Witte, J. Diriken, D. Filipescu, E. Fiori, C. Fransen, L. P. Gaffney, G. Georgiev, R. Gernh\u00e4user, M. Hackstein, S. Heinze, H. Hess, M. Hyuse, D. Jenkins, J. Konki, M. Kowalczyk, T. Kr\u00f6ll, R. Lutter, N. Marginean, C. Mihai, K. Moschner, P. Napiorkowski, B. S. Nara Singh, K. Nowak, J. Pakarinen, M. Pfeiffer, D. Radeck, P. Reiter, S. Rigby, L.M. Robledo, R. odr\u00edguez-Guzm\u00e1n, M. Rudigier, M. Scheck, M. Seidlitz, B. Siebeck, G. Simpson, P. Thoele, T. Thomas, J. Van de Walle, P. Van Duppen, M. Vermeulen, D. Voulot, R. Wadsworth, F. Wenander, K. Wimmer, K. O. Zell, and M. Zielinska
      Nucl. Phys. A 899<\/strong> (2013) 1-28<\/a>

      <\/li>\n\n\n\n
    97. Derivation of the Interacting Boson Model from mean-field theory<\/strong>
      K. Nomura
      World Scientific (2012) 116\u2013121<\/a>

      <\/li>\n\n\n\n
    98. Interacting boson model from energy density functionals: \u03b3-softness and the related topics<\/strong>
      K. Nomura
      AIP Conf. Proc. 1491<\/strong> (2012) 170-173<\/a>

      <\/li>\n\n\n\n
    99. Interacting boson model from microscopic theory<\/strong>
      K. Nomura
      AIP Conf. Proc. 1488<\/strong> (2012) 69-76<\/a>

      <\/li>\n\n\n\n
    100. Shape coexistence in lead isotopes in the interacting boson model with a Gogny energy density functional<\/strong>
      K. Nomura, R. Rodr\u00edguez-Guzm\u00e1n, L.M. Robledo, and N. Shimizu
      Phys. Rev. C 86<\/strong> (2012) 034322<\/a>

      <\/li>\n\n\n\n
    101. Shape phase transitions in the interacting boson model: Phenomenological versus microscopic descriptions<\/strong>
      J. Kotila, K. Nomura, L. Guo, N. Shimizu, and T. Otsuka
      Phys. Rev. C 85<\/strong> (2012) 054309<\/a>

      <\/li>\n\n\n\n
    102. Robust Regularity in \u03b3-Soft Nuclei and its Microscopic Realization<\/strong>
      K. Nomura, N. Shimizu, D. Vretenar, T. Nik\u0161i\u0107, and T. Otsuka
      Phys. Rev. Lett. 108<\/strong> (2012) 132501<\/a>

      <\/li>\n\n\n\n
    103. Evidence for a smooth onset of deformation in the neutron-rich Kr isotopes<\/strong>
      M. Albers, N. Warr, K. Nomura, A. Blazhev, J. Jolie, D. M\u00fccher, B. Bastin, C. Bauer, C. Bernards, L. Bettermann, V. Bildstein, J. Butterworth, M. Cappellazzo, J. Cederk\u00e4ll, D. Cline, I. Darby, S. Das Gupta, J. M. Daugas, T. Davinson, H. De Witte, J. Diriken, D. Filipescu, E. Fiori, C. Fransen, L. P. Gaffney, G. Georgiev, R. Gernh\u00e4user, M. Hackstein, S. Heinze, H. Hess, M. Huyse, D. Jenkins, J. Konki, M. Kowalczyk, T. Kr\u00f6ll, R. Lutter, N. Marginean, C. Mihai, K. Moschner, P. Napiorkowski, B. S. Nara Singh, K. Nowak, T. Otsuka, J. Pakarinen, M. Pfeiffer, D. Radeck, P. Reiter, S. Rigby, L.M. Robledo, R. odr\u00edguez-Guzm\u00e1n M. Rudigier, P. Sarriguren, M. Scheck, M. Seidlitz, B. Siebeck, G. Simpson, P. Thoele, T. Thomas, J. Van de Walle, P. Van Duppen, M. Vermeulen, D. Voulot, R. Wadsworth, F. Wenander, K. Wimmer, K. O. Zell, and M. Zielinska
      Phys. Rev. Lett. 108<\/strong> (2012) 062701<\/a>

      <\/li>\n\n\n\n
    104. Collective structural evolution in neutron-rich Yb, Hf, W, Os and Pt isotopes<\/strong>
      K. Nomura, T. Otsuka, R. Rodr\u00edguez-Guzm\u00e1n, L.M. Robledo, and P. Sarriguren
      Phys. Rev. C 84<\/strong> (2011) 054316<\/a>

      <\/li>\n\n\n\n
    105. Quadrupole collective dynamics from energy denity functionals: Collective Hamiltonian and the interacting boson model<\/strong>
      K. Nomura, T. Nik\u0161i\u0107, T. Otsuka, N. Shimizu, and D. Vretenar
      Phys. Rev. C 84<\/strong> (2011) 014302<\/a>

      <\/li>\n\n\n\n
    106. Spectroscopic calculations of the low-lying structure in exotic Os and W isotopes<\/strong>
      K. Nomura, T. Otsuka, R. Rodr\u00edguez-Guzm\u00e1n, L.M. Robledo, P. Sarriguren, P.H. Regan, P.D. Stevenson, and Zs. Podoly\u00e1k
      Phys. Rev. C 83<\/strong> (2011) 054303<\/a>

      <\/li>\n\n\n\n
    107. Microscopic derivation of IBM and structural evolution in nuclei<\/strong>
      K. Nomura
      AIP Conf. Proc. 1355<\/strong> (2011) 23-28<\/a>

      <\/li>\n\n\n\n
    108. Microscopic formulation of the interacting boson model for rotational nuclei<\/strong>
      Kosuke Nomura, Takaharu Otsuka, Noritaka Shimizu, and Lu Guo
      Phys. Rev. C 83<\/strong> (2011) 041302(R)<\/a>

      <\/li>\n\n\n\n
    109. Structural evolution in Pt isotopes with the interacting boson model Hamiltonian derived from the Gogny energy density functional<\/strong>
      K. Nomura, T. Otsuka, R. Rodr\u00edguez-Guzm\u00e1n, L.M. Robledo, and P. Sarriguren
      Phys. Rev. C 83<\/strong> (2011) 014309<\/a>

      <\/li>\n\n\n\n
    110. Derivation of IBM Hamiltonian for deformed nuclei<\/strong>
      Kosuke Nomura, Takaharu Otsuka, Noritaka Shimizu, and Lu Guo
      J. Phys.: Conf. Ser. 267<\/strong> (2011) 012050<\/a>

      <\/li>\n\n\n\n
    111. Formulating the interacting boson model by mean-field methods<\/strong>
      Kosuke Nomura, Noritaka Shimizu, and Takaharu Otsuka
      Phys. Rev. C 81<\/strong> (2010) 044307<\/a>

      <\/li>\n\n\n\n
    112. New Microscopic Derivation of the Interacting Boson Model and its Applications to Exotic Nuclei,<\/strong>
      Kosuke Nomura, Noritaka Shimizu, and Takaharu Otsuka
      AIP Conf. Proc. 1165<\/strong> (2009) 215\u2013218<\/a>

      <\/li>\n\n\n\n
    113. New formulation of Interacting Boson Model and heavy exotic nuclei<\/strong>
      Kosuke Nomura, Noritaka Shimizu, and Takaharu Otsuka
      Acta Phys. Pol. B 40<\/strong> (2009) 603<\/a>

      <\/li>\n\n\n\n
    114. New microscopic foundation of Interacting Boson Model and collectivities in exotic nuclei,<\/strong>
      Kosuke Nomura, Noritaka Shimizu, and Takaharu Otsuka
      AIP Conf. Proc. 1090<\/strong> (2009) 313-317<\/a>

      <\/li>\n\n\n\n
    115. Mean-Field Derivation of the Interacting Boson Model Hamiltonian and Exotic Nuclei<\/strong>
      Kosuke Nomura, Noritaka Shimizu, and Takaharu Otsuka
      Phys. Rev. Lett. 101<\/strong> (2008) 142501<\/a><\/li>\n<\/ol>\n","protected":false},"excerpt":{"rendered":"

      Kosuke Nomura Books Peer-reviewed papers<\/p>\n","protected":false},"author":2,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":[],"_links":{"self":[{"href":"https:\/\/c-mng.cwh.hokudai.ac.jp\/nt.sci\/nomura\/wp-json\/wp\/v2\/pages\/40"}],"collection":[{"href":"https:\/\/c-mng.cwh.hokudai.ac.jp\/nt.sci\/nomura\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/c-mng.cwh.hokudai.ac.jp\/nt.sci\/nomura\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/c-mng.cwh.hokudai.ac.jp\/nt.sci\/nomura\/wp-json\/wp\/v2\/users\/2"}],"replies":[{"embeddable":true,"href":"https:\/\/c-mng.cwh.hokudai.ac.jp\/nt.sci\/nomura\/wp-json\/wp\/v2\/comments?post=40"}],"version-history":[{"count":71,"href":"https:\/\/c-mng.cwh.hokudai.ac.jp\/nt.sci\/nomura\/wp-json\/wp\/v2\/pages\/40\/revisions"}],"predecessor-version":[{"id":270,"href":"https:\/\/c-mng.cwh.hokudai.ac.jp\/nt.sci\/nomura\/wp-json\/wp\/v2\/pages\/40\/revisions\/270"}],"wp:attachment":[{"href":"https:\/\/c-mng.cwh.hokudai.ac.jp\/nt.sci\/nomura\/wp-json\/wp\/v2\/media?parent=40"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}