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Comment on “Many-body localization in Ising models with random long-range interactions”

机译:评论“具有随机远程互动的仪表中的多机身本地化”

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This Comment is dedicated to the investigation of many-body localization in a quantum Ising model with long-range power-law interactions r~(-α), relevant for a variety of systems ranging from electrons in Anderson insulators to spin excitations in chains of cold atoms. It has earlier been argued [arXiv:cond-mat/0611387 (2005); Phys. Rev. B 91, 094202 (2015)] that this model obeys the dimensional constraint suggesting the delocalization of all finite-temperature states in the thermodynamic limit for α ≤ 2d in a d-dimensional system. This expectation conflicts with the recent numerical studies of the specific interacting spin model of Li et al. [Phys. Rev. A 94, 063625 (2016)]. To resolve this controversy we reexamine the model of Li et al. [Phys. Rev. A 94, 063625 (2016)] and demonstrate that the infinite-temperature states there obey the dimensional constraint. The earlier developed scaling theory for the critical system size required for delocalization is extended to small exponents 0 ≤ α ≤ d. The disagreements between the two works are explained by the nonstandard selection of investigated states in the ordered phase in the work of Li et al. [Phys. Rev. A 94, 063625 (2016)].
机译:该评论致力于调查具有远程动力法相互作用R〜(-α)的量子ising模型中的许多身体定位,与Anderson绝缘子中电子中的各种系统相关,以便在链中旋转激励冷原子。它早些时候已被争论[arxiv:cond-mat / 0611387(2005);物理。 Rev. B 91,094202(2015)]该模型遵守D维系统中α≤2D热力学限制中所有有限温度状态的尺寸约束。这种预期与近期李等人的近期数值研究冲突。 [物理。 Rev. A 94,063625(2016)]。解决这一争议我们重新审视李等人的模型。 [物理。 Rev. A 94,063625(2016)]并证明无限温度状态遵守尺寸约束。早期开发了用于划分所需的关键系统尺寸的缩放理论,扩展到小指数0≤α≤D。两项作品之间的分歧是由李等人的作品中的有序阶段的调查阶段的非标准选择解释。 [物理。 Rev. A 94,063625(2016)]。

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