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Physical generalizations of the Renyi entropy

机译:仁义熵的物理概括

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We present a new type of generalization of the Renyi entropy that. follows naturally from its representation as a thermodynamic quantity. We apply it to the case of d-dimensional conformal field theories (CFITs) reduced on a region bounded by a sphere. It is known how to compute their Renyi entropy as an integral of the thermal entropy of hyperbolic black holes in (d+1)-dimensional anti-de Sitter spacetime. We show how this integral fits into the framework of extended gravitational thermodynamics, and then point out the natural generalization of the Renyi entropy that suggests itself in that light. In the field theory terms, the new generalization employs aspects of the physics of Renormalization Group (RG) flow to define a refined version of the reduced vacuum density matrix. For d = 2, it can be derived directly in terms of twist operators in field theory. The framework presented here may have applications beyond this context, perhaps in studies of both quantum and classical information theoretic properties of a variety of systems.
机译:我们呈现了瑞尼熵的新型概括。自然而然地从其表示作为热力学数量。我们将其应用于由球体界定的区域减少的D维保形场理论(CFITS)的情况。众所周知,如何将仁义熵计算为(D + 1) - 二维防德温泉时空的双曲黑洞的热熵的积分。我们展示了这种整体的适合如何进入扩展重力热力学的框架,然后指出仁义熵的自然概括,这些熵暗示了自己的光线。在现场理论术语中,新的概括采用了重整化组(RG)流体物理学的各方面来定义降低的真空密度矩阵的精制版本。对于D = 2,它可以直接从场理论中的扭转操作者派生。这里呈现的框架可能具有超出这一背景的应用,也许是对多种系统的量子和经典信息理论性质的研究。

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