21 citations to https://www.mathnet.ru/rus/jhep36
  1. Zhou-Run Zhu, Jun-Xia Chen, Xian-Ming Liu, Defu Hou, “Thermodynamics and energy loss in D dimensions from holographic QCD model”, Eur. Phys. J. C, 82:6 (2022)  crossref
  2. Si-Jiang Yang, Run Zhou, Shao-Wen Wei, Yu-Xiao Liu, “Kinetics of a phase transition for a Kerr-AdS black hole on the free-energy landscape”, Phys. Rev. D, 105:8 (2022)  crossref
  3. Yidian Chen, Danning Li, Mei Huang, “Inhomogeneous chiral condensation under rotation in the holographic QCD”, Phys. Rev. D, 106:10 (2022)  crossref
  4. Issei Koga, Naritaka Oshita, Kazushige Ueda, “Global study of the scalar quasinormal modes of Kerr- AdS5 black holes: Stability, thermality, and horizon area quantization”, Phys. Rev. D, 105:12 (2022)  crossref
  5. Yi-Ze Cai, Rui-Ping Jing, Zi-Qiang Zhang, “Holographic Schwinger effect in a rotating strongly coupled medium”, Chinese Phys. C, 46:10 (2022), 104107  crossref
  6. Carlota Andres, Fabio Dominguez, Andrey V. Sadofyev, Carlos A. Salgado, “Jet broadening in flowing matter: Resummation”, Phys. Rev. D, 106:7 (2022)  crossref
  7. Nelson R. F. Braga, Luiz F. Faulhaber, Octavio C. Junqueira, “Confinement-deconfinement temperature for a rotating quark-gluon plasma”, Phys. Rev. D, 105:10 (2022)  crossref
  8. I. Ya. Aref'eva, “Theoretical studies of the formation and properties of quark-gluon matter under conditions of high baryon densities attainable at the NICA experimental complex”, ЭЧАЯ, 52:4 (2021), 512–521  mathnet  isi  scopus; I. Ya. Aref'eva, “Theoretical studies of the formation and properties of quark-gluon matter under conditions of high baryon densities attainable at the NICA experimental complex”, Phys. Part. Nucl., 52:4 (2021), 512–521  mathnet  crossref
  9. Xun Chen, Lin Zhang, Danning Li, Defu Hou, Mei Huang, “Gluodynamics and deconfinement phase transition under rotation from holography”, J. High Energ. Phys., 2021:7 (2021)  crossref
  10. Andrey V. Sadofyev, Matthew D. Sievert, Ivan Vitev, “Ab initio coupling of jets to collective flow in the opacity expansion approach”, Phys. Rev. D, 104:9 (2021)  crossref
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