Balducci Federico, Beau Mathieu, Yang Jing, Gambassi Andrea, Del Campo Adolfo
Department of Physics and Materials Science, University of Luxembourg, L-1511 Luxembourg, Grand Duchy of Luxembourg.
Department of Physics, University of Massachusetts, Boston, Massachusetts 02125, USA.
Phys Rev Lett. 2023 Dec 8;131(23):230401. doi: 10.1103/PhysRevLett.131.230401.
The Kibble-Zurek mechanism (KZM) predicts that the average number of topological defects generated upon crossing a continuous or quantum phase transition obeys a universal scaling law with the quench time. Fluctuations in the defect number near equilibrium are approximately of Gaussian form, in agreement with the central limit theorem. Using large deviations theory, we characterize the universality of fluctuations beyond the KZM and report the exact form of the rate function in the transverse-field quantum Ising model. In addition, we characterize the scaling of large deviations in an arbitrary continuous phase transition, building on recent evidence establishing the universality of the defect number distribution.
基布尔-祖雷克机制(KZM)预测,在跨越连续或量子相变时产生的拓扑缺陷的平均数量遵循与猝灭时间相关的通用标度律。接近平衡时缺陷数量的涨落近似为高斯形式,这与中心极限定理一致。利用大偏差理论,我们刻画了超出KZM的涨落的普适性,并给出了横向场量子伊辛模型中速率函数的精确形式。此外,基于最近确立缺陷数分布普适性的证据,我们刻画了任意连续相变中大偏差的标度。