论文标题
延长黑洞热力学的高维根源
Higher-dimensional origin of extended black hole thermodynamics
论文作者
论文摘要
全息脑植物用于呈现扩展黑洞热力学的高维起源。在此框架中,经典的,渐近的抗De保姆黑洞映射到一个维度的量子黑洞,较小的量子孔,并具有在Brane几何形状上反应的保形物质扇区。单独改变brane张力会导致勃雷恩上的动力学宇宙常数,并相应地归因于brane黑洞。因此,散装中的标准热力学(包括来自棕褐色的工作术语),促使勃雷(Brane)延长热力学,准确地促进了反向反应中的所有订单。对特定量子黑孔的扩展热力学的微分解释是通过双全息图给出的。
Holographic braneworlds are used to present a higher-dimensional origin of extended black hole thermodynamics. In this framework, classical, asymptotically anti-de Sitter black holes map to quantum black holes in one dimension less, with a conformal matter sector that backreacts on the brane geometry. Varying the brane tension alone leads to a dynamical cosmological constant on the brane, and, correspondingly, a variable pressure attributed to the brane black hole. Thus, standard thermodynamics in the bulk, including a work term coming from the brane, induces extended thermodynamics on the brane, exactly, to all orders in the backreaction. A microsopic interpretation of the extended thermodynamics of specific quantum black holes is given via double holography.