Fidelity susceptibility as holographic PV-criticality

Fidelity susceptibility as holographic PV-criticality
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DOI:
10.1016/j.physletb.2016.12.006
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发表时间:
2016-04
期刊:
影响因子:
4.4
通讯作者:
D. Momeni;M. Faizal;K. Myrzakulov;R. Myrzakulov
D. Momeni;M. Faizal;K. Myrzakulov;R. Myrzakulov
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
D. Momeni;M. Faizal;K. Myrzakulov;R. Myrzakulov

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众所周知,熵可以用来全息地建立几何学、热力学和信息论之间的联系。在本文中,我们将使用复杂性全息几何,热力学和信息论之间建立联系。因此,我们将在扩展相空间中分析全息复杂性、保真度磁化率和热力学之间的关系。我们将证明,保真度磁化率(这是一个最大的体积在AdS的信息复杂性的对偶)可以与体积(这是共轭的宇宙常数在扩展的热力学相空间)。因此,这封信使用复杂性建立了几何学、热力学和信息论之间的关系。
It is well known that entropy can be used to holographically establish a connection among geometry, thermodynamics and information theory. In this paper, we will use complexity to holographically establish a connection among geometry, thermodynamics and information theory. Thus, we will analyze the relation among holographic complexity, fidelity susceptibility, and thermodynamics in extended phase space. We will demonstrate that fidelity susceptibility (which is the informational complexity dual to a maximum volume in AdS) can be related to the thermodynamical volume (which is conjugate to the cosmological constant in the extended thermodynamic phase space). Thus, this letter establishes a relation among geometry, thermodynamics, and information theory, using complexity.