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Weak Integrability Breaking: Chaos with Integrability Signature in Coherent Diffusion

机译:弱可积分破:在相干扩散中具有可积分签名的混沌

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摘要

We study how perturbations affect dynamics of integrable many-body quantum systems, causing transition from integrability to chaos. Looking at spin transport in the Heisenberg chain with impurities we find that in the thermodynamic limit transport gets diffusive already at an infinitesimal perturbation. Small extensive perturbations therefore cause an immediate transition from integrability to chaos. Nevertheless, there is a remnant of integrability encoded in the dependence of the diffusion constant on the impurity density, namely, at small densities it is proportional to the square root of the inverse density, instead of to the inverse density as would follow from Matthiessen's rule. We show that Matthiessen's rule has to be modified in nonballistic systems. Results also highlight a nontrivial role of interacting scattering on a single impurity, and that there is a regime where adding more impurities can actually increase transport.
机译:我们研究扰动如何影响可集成的许多身体量子系统的动态,从而导致从可乘性转变为混沌。在Heisenberg链中旋转运输与杂质,我们发现在热力学限制运输中,已经在无限的扰动中扩散。因此,小广泛的扰动导致直接过渡到混乱的可迁移。然而,在杂质密度对扩散常数的依赖性依赖性的依赖性中存在可积分的剩余性,即,在小密度下,它与逆密度的平方根成比例,而不是从Matthiessen的规则所遵循的逆密度。我们表明Matthiessen的规则必须在非金黑的系统中进行修改。结果还突出了在单个杂质上相互作用的非牵引作用,并且有一个政权,其中添加更多杂质实际上可以增加运输。

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  • 来源
    《Physical review letters》 |2020年第18期|180605.1-180605.7|共7页
  • 作者

    Znidaric Marko;

  • 作者单位

    Univ Ljubljana Fac Math & Phys Phys Dept Ljubljana 1000 Slovenia;

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  • 正文语种 eng
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