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Quantum gravity effect on the Hawking radiation of spinning dilaton black hole

机译:量子重力对纺丝稀释辐射辐射的影响

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摘要

The quantum gravity correction to the Hawking temperature of the 2+1 dimensional spinning dilaton black hole is studied by using the Hamilton-Jacobi approach in the context of the Generalized Uncertainty Principle (GUP). It is observed that the modified Hawking temperature of the black hole depends on both black hole and the tunnelling particle properties. Moreover, it is observed that the mass and the angular momentum of the scalar particle have the same effect on the Hawking temperature of the black hole, while the mass and total angular momentum (orbital+spin) of Dirac particle have different effect. Furthermore, the mass and total angular momentum (orbital+spin) of vector boson particle have a similar effect that of Dirac particle. Also, thermodynamical stability and phase transition of the black hole are discussed for scalar, Dirac and vector boson in the context of GUP, respectively. And, it is observed that the scalar particle probes the black hole as stable whereas, as for Dirac and vector boson particles, it might undergoes second-type phase transition to become stable while in the absence of the quantum gravity effect all of these particle probes the black hole as stable.
机译:通过在广义不确定性原理(GUP)的背景下使用Hamilton-Jacobi方法研究了2 + 1维纺丝黑洞的霍克宁温度的量子重力校正。观察到,黑洞的改性霍克宁温度取决于黑洞和隧道颗粒性能。此外,观察到标量颗粒的质量和角动量对黑洞的霍克宁温度具有相同的效果,而Diac颗粒的质量和总角动量(轨道+旋转)具有不同的效果。此外,载体糖糖颗粒的质量和总角动量(轨道+旋转)具有类似的抗菌颗粒的效果。而且,在GUP的背景下分别用于标量,DIRAC和VECTOR BOSON讨论了黑洞的热力学稳定性和相位过渡。并且,观察到标量粒子探测黑洞,如稳定,而对于狄拉克和载体糖糖颗粒,它可能经历第二型相转变以在不存在量子重力效应所有这些粒子探针时变得稳定黑洞是稳定的。

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