42 citations to https://www.mathnet.ru/rus/tmf4734
  1. Paolo Aniello, Stefano Mancini, Vincenzo Parisi, “Quantum mechanics on a p-adic Hilbert space: Foundations and prospects”, Int. J. Geom. Methods Mod. Phys., 21:10 (2024)  crossref
  2. М. Д. Миссаров, Д. А. Хайруллин, “Преобразование ренормализационной группы в обобщенной фермионной иерархической модели”, Изв. РАН. Сер. матем., 87:5 (2023), 164–176  mathnet  crossref  mathscinet  zmath  adsnasa; M. D. Missarov, D. A. Khajrullin, “The renormalization group transformation in the generalized fermionic hierarchical model”, Izv. Math., 87:5 (2023), 1011–1023  crossref  isi
  3. W.A. Zúñiga-Galindo, “p-adic statistical field theory and deep belief networks”, Physica A: Statistical Mechanics and its Applications, 612 (2023), 128492  crossref
  4. Zuniga-Galindo W.A. Zambrano-Luna B.A. Leon-Cardenal E., “Graphs, Local Zeta Functions, Log-Coulomb Gases, and Phase Transitions At Finite Temperature”, J. Math. Phys., 63:1 (2022), 013506  crossref  isi
  5. Tomohiro Hashizume, Sridevi Kuriyattil, Andrew J. Daley, Gregory Bentsen, “Tunable Geometries in Sparse Clifford Circuits”, Symmetry, 14:4 (2022), 666  crossref
  6. W. A. Zúñiga-Galindo, “Non-Archimedean statistical field theory”, Rev. Math. Phys., 34:08 (2022)  crossref
  7. Bourama Toni, W. A. Zúñiga-Galindo, STEAM-H: Science, Technology, Engineering, Agriculture, Mathematics & Health, Advances in Non-Archimedean Analysis and Applications, 2021, 1  crossref
  8. Ageev D.S. Bagrov A.A. Iliasov A.A., “Coleman-Weinberg Potential in P-Adic Field Theory”, Eur. Phys. J. C, 80:9 (2020), 859  crossref  isi
  9. Zuniga-Galindo W.A., Torba S.M., “Non-Archimedean Coulomb Gases”, J. Math. Phys., 61:1 (2020), 013504  crossref  isi
  10. Missarov M.D., “New Variant of the Fermionic Model on the Hierarchical Two-Dimensional Lattice”, P-Adic Numbers Ultrametric Anal. Appl., 12:2 (2020), 163–170  crossref  isi
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