论文标题

Schwarzschild样黑洞的热力学,其长度最小的长度和周围薄的积聚盘的辐射过程

Thermodynamics of a Schwarzschild-like black hole with a minimum observable length and the radiation process of a thin accretion disc around it

论文作者

Barman, Himangshu, Moussa, Mohamed, Shababi, Homa, Rahaman, Anisur

论文摘要

我们研究了量子重力对热力学特征的影响和schwarzschild样黑洞周围的薄积聚盘的辐射过程。通过不确定性的概括框架来调用量子重力校正,这等同于重新归一化组改善了量子重力,并保持了渐近安全重力介词的极限。它承认一个自由参数,该参数编码对时空几何形状的量子效应。它使我们能够研究黑洞本身的热性能以及磁盘周围的积聚方式如何在量子状态下修改。我们明确计算了修改后的黑洞的熵,温度,自由能和焓,并用编码量子效应的自由参数显示其变化。我们明确地对量子通量,磁盘的温度,差异性和降低质量的转换效率进行量子校正估计。我们观察到最内向稳定的圆形轨道(ISCO)的半径显着转移,以及与经典重力相比,平均热辐射值的最大值的最大值增强了平均热辐射值的最大值以及更大的降低质量转化效率。

We study quantum gravity effects on the thermodynamic character and the radiation process of the thin accretion disks around Schwarzschild-like black hole. The quantum gravity correction is invoked through the framework of generalization of uncertainty which is equivalent to the renormalization group improved quantum gravity and maintain the limit of the asymptotically safe preposition of gravity. It admits a free parameter that encodes the quantum effects on the spacetime geometry. It allows us to study how the thermal properties of the black hole itself and the the accretion around it disk are modified in the quantum regime. We computed explicitly the entropy, temperature, free energy, and enthalpy of the modified black hole and show its variation with with the free parameter that encodes the quantum effects. We explicitly make estimations of quantum correction to the time averaged energy flux, the temperature of the disk, the differential luminosity, and the conversion efficiency of accreting mass into radiation. We observe a conspicuous shifting of the radius of the innermost stable circular orbit (ISCO) toward small values together with an enhancement of the maximum of the values of the average thermal radiation and greater conversion efficiency of accreting mass into radiation compared to the classical gravity scenario.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源