自由费米子监控系统中不同解离的影响

IF 1.6 4区 物理与天体物理 Q3 PHYSICS, CONDENSED MATTER The European Physical Journal B Pub Date : 2024-06-25 DOI:10.1140/epjb/s10051-024-00725-0
Giulia Piccitto, Davide Rossini, Angelo Russomanno
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引用次数: 0

摘要

摘要 我们考虑了一个发生去相变的自由费米子链,它由两种不同的随机测量协议(解开)来描述:一种是量子态扩散协议,另一种是量子跳跃协议。这两种协议都将状态保持在斯莱特决定形式,从而可以处理相当大的系统规模。我们发现测量算子在量子轨迹上的分布存在分岔,也就是说,在某一点上,测量算子的分布形状从单峰变成了双峰。出现这种现象的测量强度值对于两种解旋来说是相似的,但分布和转变具有不同的性质,反映了两种测量协议的对称性。我们还考虑了斯莱特决定分量的反参与比随系统大小的缩放,并发现了一个幂律缩放,它标志着一种多分形行为,在两种解开和任何非消失的测量强度中都是如此。这两个最大值连续对称地指向分叉点 \(\gamma \) QSD \(\sim0.2\),导数不连续。
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The impact of different unravelings in a monitored system of free fermions

We consider a free-fermion chain undergoing dephasing, described by two different random-measurement protocols (unravelings): a quantum-state-diffusion and a quantum-jump one. Both protocols keep the state in a Slater-determinant form, allowing to address quite large system sizes. We find a bifurcation in the distribution of the measurement operators along the quantum trajectories, that’s to say, there is a point where the shape of this distribution changes from unimodal to bimodal. The value of the measurement strength where this phenomenon occurs is similar for the two unravelings, but the distributions and the transition have different properties reflecting the symmetries of the two measurement protocols. We also consider the scaling with the system size of the inverse participation ratio of the Slater-determinant components and find a power-law scaling that marks a multifractal behaviour, in both unravelings and for any nonvanishing measurement strength.

Position of the maxima of P n vs \(\gamma \) for the QSD protocol. The two maxima stem continuously and symmetrically at the bifurcation point \(\gamma \) QSD \(\sim 0.2\), with a discontinuity of the derivative.

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来源期刊
The European Physical Journal B
The European Physical Journal B 物理-物理:凝聚态物理
CiteScore
2.80
自引率
6.20%
发文量
184
审稿时长
5.1 months
期刊介绍: Solid State and Materials; Mesoscopic and Nanoscale Systems; Computational Methods; Statistical and Nonlinear Physics
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