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Generalized uncertainty principle and black hole thermodynamics
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作者 Jin Pu qin-bin mao +2 位作者 Qing-Quan Jiang Jing-Xia Yu Xiao-Tao Zu 《Chinese Physics C》 SCIE CAS CSCD 2020年第9期186-193,共8页
Banerjee-Ghosh's work shows that the singularity problem can be naturally avoided by the fact that black hole evaporation stops when the remnant mass is greater than the critical mass when including the generalize... Banerjee-Ghosh's work shows that the singularity problem can be naturally avoided by the fact that black hole evaporation stops when the remnant mass is greater than the critical mass when including the generalized uncertainty principle(GUP)effects with first-and second-order corrections.In this paper,we first follow their steps to reexamine Banerjee-Ghosh's work,but we find an interesting result:the remnant mass is always equal to the critical mass at the final stage of black hole evaporation with the inclusion of the GUP effects.Then,we use Hossenfelder's GUP,i.e.,another GUP model with higher-order corrections,to restudy the final evolution behavior of the black hole evaporation,and we confirm the intrinsic self-consistency between the black hole remnant and critical masses once more.In both cases,we also find that the thermodynamic quantities are not singular at the final stage of black hole evaporation. 展开更多
关键词 black hole thermodynamics generalized uncertainty principle remnant mass critical mass
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