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首页> 外文期刊>Journal of physics, A. Mathematical and theoretical >Strong disorder real-space renormalization for the many-body-localized phase of random Majorana models
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Strong disorder real-space renormalization for the many-body-localized phase of random Majorana models

机译:对随机马科纳型型号的多体局部阶段的强障碍实际空间重整

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摘要

For the many-body-localized phase of random Majorana models, a general strong disorder real-space renormalization procedure known as RSRG-X (Pekker et al 2014 Phys. Rev. X 4 011052) is described to produce the whole set of excited states, via the iterative construction of the local integrals of motion (LIOMs). The RG rules are then explicitly derived for arbitrary quadratic Hamiltonians (free-fermions models) and for the Kitaev chain with local interactions involving even numbers of consecutive Majorana fermions. The emphasis is put on the advantages of the Majorana language over the usual quantum spin language to formulate unified RSRG-X rules.
机译:对于随机Majorana模型的许多身体局部化阶段,称为RSRG-X的一般强障碍实际重整化程序(Pekkker等,2014年。Rev. x 4 011052)被描述为生产整组兴奋状态 ,通过迭代构造运动的局部积分(LIOMS)。 然后明确地将RG规则用于任意二次哈密顿人(自由柑橘类模型)和Kitaev链具有局部相互作用的Kitaev链,甚至是连续的马太基亚蜕皮的偶数。 重点是Majorana语言在通常的量子旋转语言上的优势,以制定统一的RSRG-X规则。

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