Lattice Study of the Equation of State of a Rotating Gluon Plasma
- Авторлар: Braguta V.V1, Kudrov I.E2,3, Roenko A.A1,4, Sychev D.A1,2, Chernodub M.N5
- 
							Мекемелер: 
							- Bogoliubov Laboratory of Theoretical Physics, Joint Institute for Nuclear Research, 141980, Dubna, Moscow region, Russia
- Moscow Institute of Physics and Technology (National Research University), 141700, Dolgoprudnyi, Moscow region, Russia
- Institute for High Energy Physics, National Research Center Kurchatov Institute, 142281, Protvino, Moscow region, Russia
- Dubna State University, 141980, Dubna, Moscow region, Russia
- Institut Denis Poisson UMR 7013, Université de Tours, 37200, Tours, France
 
- Шығарылым: Том 117, № 9-10 (5) (2023)
- Беттер: 644-650
- Бөлім: Articles
- URL: https://cardiosomatics.ru/0370-274X/article/view/662519
- DOI: https://doi.org/10.31857/S1234567823090021
- EDN: https://elibrary.ru/BOBJIB
- ID: 662519
Дәйексөз келтіру
Аннотация
The effect of uniform rotation on the equation of state of gluodynamics has been studied in lattice simulation. To this end, the system has been considered in the corotating reference frame, where the rotation can be modeled as an external gravitational field. The free energy of the studied system in the case of sufficiently slow rotation can be expanded in a power series in the angular velocity. The moment of inertia given by the second-order coefficient of this expansion has been calculated and its dependence on the temperature and the dimensions of the rotating system has been determined. Our results indicate that the moment of inertia of gluodynamics is negative up to the temperature T * ~ 1.5Tc, where Tc is the critical temperature of the confinement/deconfinement phase transition, and becomes positive at temperatures T > T *. The negative moment of inertia has been attributed to the thermodynamic instability of the gluon plasma with respect to uniform rotation.
Авторлар туралы
V. Braguta
Bogoliubov Laboratory of Theoretical Physics, Joint Institute for Nuclear Research, 141980, Dubna, Moscow region, Russia
														Email: vvbraguta@theor.jinr.ru
				                					                																			                												                														
I. Kudrov
Moscow Institute of Physics and Technology (National Research University), 141700, Dolgoprudnyi, Moscow region, Russia; Institute for High Energy Physics, National Research Center Kurchatov Institute, 142281, Protvino, Moscow region, Russia
														Email: ilyakudrov@yandex.ru
				                					                																			                												                														
A. Roenko
Bogoliubov Laboratory of Theoretical Physics, Joint Institute for Nuclear Research, 141980, Dubna, Moscow region, Russia; Dubna State University, 141980, Dubna, Moscow region, Russia
														Email: roenko@theor.jinr.ru
				                					                																			                												                														
D. Sychev
Bogoliubov Laboratory of Theoretical Physics, Joint Institute for Nuclear Research, 141980, Dubna, Moscow region, Russia; Moscow Institute of Physics and Technology (National Research University), 141700, Dolgoprudnyi, Moscow region, Russia
														Email: sychev.da@phystech.edu
				                					                																			                												                														
M. Chernodub
Institut Denis Poisson UMR 7013, Université de Tours, 37200, Tours, France
							Хат алмасуға жауапты Автор.
							Email: maxim.chernodub@univ-tours.fr
				                					                																			                												                														
Әдебиет тізімі
- L. Adamczyk, J.K. Adkins, G. Agakishev, et al. (STAR), Nature 548, 62 (2017); arXiv:1701.06657 [nuclex].
- S. Ebihara, K. Fukushima, and K. Mameda, Phys. Lett. B 764, 94 (2017); arXiv:1608.00336 [hep-ph].
- M. Chernodub and S. Gongyo, JHEP 01, 136 (2017); arXiv:1611.02598 [hep-th].
- Y. Jiang and J. Liao, Phys. Rev. Lett. 117, 192302 (2016); arXiv:1606.03808 [hep-ph].
- H. Zhang, D. Hou, and J. Liao, Chin. Phys. C 44, 111001 (2020); arXiv:1812.11787 [hep-ph].
- X. Wang, M. Wei, Z. Li, and M. Huang, Phys. Rev. D 99, 016018 (2019); arXiv:1808.01931 [hep-ph].
- M.N. Chernodub, Phys. Rev. D 103, 054027 (2021); arXiv:2012.04924 [hep-ph].
- X. Chen, L. Zhang, D. Li, D. Hou, and M. Huang, JHEP 07, 132 (2021); arXiv:2010.14478 [hep-ph].
- N. Sadooghi, S.M.A. Tabatabaee Mehr, and F. Taghinavaz, Phys. Rev. D 104, 116022 (2021); arXiv:2108.12760 [hep-ph].
- Y. Fujimoto, K. Fukushima, and Y. Hidaka, Phys. Lett. B 816, 136184 (2021); arXiv:2101.09173 [hepph].
- A.A. Golubtsova, E. Gourgoulhon, and M.K. Usova, Nucl. Phys. B 979, 115786 (2022); arXiv:2107.11672 [hep-th].
- Y.-Q. Zhao, S. He, D. Hou, L. Li, and Z. Li (2022), arXiv:2212.14662 [hep-ph].
- A.A. Golubtsova and N. S. Tsegel'nik (2022), arXiv:2211.11722 [hep-th].
- N.R.F. Braga, L. F. Ferreira, and O.C. Junqueira (2023), arXiv:2301.01322 [hep-th].
- M.N. Chernodub (2022), arXiv:2210.05651 [quant-ph].
- M.N. Chernodub, (2022), arXiv:2208.04808 [hepth].
- S. Chen, K. Fukushima, and Y. Shimada, Phys. Rev. Lett. 129, 242002 (2022); arXiv:2207.12665 [hep-ph].
- A. Yamamoto and Y. Hirono, Phys. Rev. Lett. 111, 081601 (2013); arXiv:1303.6292 [hep-lat].
- V.V. Braguta, A.Y. Kotov, D.D. Kuznedelev, and A.A. Roenko, JETP Lett. 112, 6 (2020).
- V.V. Braguta, A.Y. Kotov, D.D. Kuznedelev, and A.A. Roenko, Phys. Rev. D 103, 094515 (2021); arXiv:2102.05084 [hep-lat].
- M.N. Chernodub, V.A. Goy, and A.V. Molochkov, (2022), arXiv:2209.15534 [hep-lat].
- V.V. Braguta, A. Kotov, A. Roenko, and D. Sychev, PoS LATTICE2022, 190 (2023); arXiv:2212.03224 [hep-lat].
- V. Braguta, A.Y. Kotov, D. Kuznedelev, and A. Roenko, PoS LATTICE2021, 125 (2022); arXiv:2110.12302 [hep-lat].
- G. Boyd, J. Engels, F. Karsch, E. Laermann, C. Legeland, M. Lutgemeier, and B. Petersson, Nucl. Phys. B 469, 419 (1996); arXiv:heplat/9602007.
- C. Bonati, M. D'Elia, M. Mariti, F. Negro, and F. Sanfilippo, Phys. Rev. D 89, 054506 (2014); arXiv:1310.8656 [hep-lat].
- A. Bazavov, T. Bhattacharya, C. DeTar et al. (HotQCD), Phys. Rev. D 90, 094503 (2014); arXiv:1407.6387 [hep-lat].
- S. Bors'anyi, Z. Fodor, C. Hoelbling, S.D. Katz, S.Krieg, and K.K. Szab'o, Phys. Lett. B 730, 99 (2014).
- J.N. Guenther, R. Bellwied, S. Borsanyi, Z. Fodor, S.D. Katz, A. Pasztor, C. Ratti, and K.K. Szab'o, Nucl. Phys. A 967, 720 (2017); arXiv:1607.02493 [hep-lat].
- V.V. Braguta, M.N. Chernodub, A.A. Roenko, and D.A. Sychev (2023), arXiv:2303.03147 [hep-lat].
- G. Curci, P. Menotti, and G. Paffuti, Phys. Lett. B 130, 205 (1983).
- M. L¨uscher and P.Weisz, Phys. Lett. B 158, 250 (1985).
- J. Lonˇcar, B. Igrec, and D. Babi'c, Symmetry 14, 529 (2022).
- M.N. Chernodub, Phys. Rev. D 87, 025021 (2013); arXiv:1207.3052 [quant-ph].
- A. Flachi and M. Edmonds, Phys. Rev. D 107, 025008 (2023); arXiv:2212.02776 [hep-th].
- B. F. Whiting and J.W. York, Jr., Phys. Rev. Lett. 61, 1336 (1988).
- T. Prestidge, Phys. Rev. D 61, 084002 (2000); 10.1103/physrevd.61.084002.
- H. S. Reall, Phys. Rev. D 64, 044005 (2001); 10.1103/physrevd.64.044005.
Қосымша файлдар
 
				
			 
						 
					 
						 
						 
						

 
  
  
  Мақаланы E-mail арқылы жіберу
			Мақаланы E-mail арқылы жіберу 
 Ашық рұқсат
		                                Ашық рұқсат Рұқсат берілді
						Рұқсат берілді Рұқсат ақылы немесе тек жазылушылар үшін
		                                							Рұқсат ақылы немесе тек жазылушылар үшін
		                                					