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Holographic Interpretation of Relative State Complexity

机译:相对状态复杂性的全息解释

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We investigate a large- N conformal field theory (CFT) in a high-energy pure state coupled to a small auxiliary system of M weakly-interacting degrees of freedom, and argue the relative state complexity of the auxiliary system is holographically dual to an effective low-energy notion of computational cost in the bulk, i.e., to the minimal depth of the quantum circuit required to decode its gravitational dual. In light of this, using Nielsen’s approach, a new measure of quantum chaos in terms of the evolution of circuit complexity is proposed. It suggests that studying the evolution of circuit complexity of the auxiliary system can teach us about the chaotic properties of the large- N CFT. This new diagnostic for quantum chaos has important implications for the interior dynamics of evaporating black holes as it implies the radiated Hawking cloud is pseudorandom.
机译:我们在高能量纯状态下调查大量的纯净状态(CFT),耦合到M个弱相互作用的自由度的小辅助系统,并且争论辅助系统的相对状态复杂度是充分的双重效果批量计算成本的低能量概念,即解码其重力双重所需的量子电路的最小深度。鉴于此,提出了使用尼尔森的方法,提出了在电路复杂性演化方面的量子混沌的新措施。它表明,研究辅助系统的电路复杂性的演变可以教我们大约CFT的混沌特性。对于Quantum Chaos来说,这种新的诊断对蒸发黑洞的内部动力学具有重要意义,因为它意味着辐射的霍金云是伪随机。

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