中文
相关论文

相关论文: Quantum Pontus-Mpemba Effect Enabled by the Liouvi…

200 篇论文

We investigate a non-Hermitian model featuring non-reciprocal gradient hoppings. Through an in-depth analysis of the Liouvillian spectrum and dynamics, we confirm the emergence of the Liouvillian skin effect resulting from the…

量子物理 · 物理学 2023-09-21 Zeqing Wang , Yao Lu , Yi Peng , Ran Qi , Yucheng Wang , Jianwen Jie

We investigate how quasiperiodic spatial structure enables protocol-induced acceleration in open quantum systems by analyzing the Pontus-Mpemba effect in one-dimensional chains subject to Markovian dephasing. The dynamics are governed by a…

无序系统与神经网络 · 物理学 2026-02-18 Yefeng Song , Junxiao Chen , Xiangyu Yang , Mingdi Xu , Xiang-Ping Jiang , Lei Pan

The quantum Pontus-Mpemba effect is a counterintuitive phenomenon in which a quantum system relaxes faster through a two-step evolution protocol than through a single, unquenched relaxation. This work proposes its realization in cavity…

量子物理 · 物理学 2026-05-08 Stefano Longhi

The quantum Pontus-Mpemba effect (QPME) is a counterintuitive phenomenon wherein a quantum system relaxes more rapidly through a two-step evolution protocol than through direct evolution under a symmetric Hamiltonian alone. In this…

量子物理 · 物理学 2026-04-13 Hui Yu , Jiangping Hu , Shi-Xin Zhang

The classical Mpemba effect is the counterintuitive phenomenon where hotter water freezes faster than colder water due to the breakdown of Newton's law of cooling after a sudden temperature quench. The genuine nonequilibrium post-quench…

量子物理 · 物理学 2026-05-01 Marco Peluso , Reinhold Egger , Andrea Nava

The Liouvillian skin effect and the non-Hermitian skin effect have both been used to explain the localization of eigenmodes near system boundaries, though the former is arguably more accurate in some regimes due to its incorporation of…

It is highly nontrivial to what extent we can deduce the relaxation behavior of a quantum dissipative system from the spectral gap of the Liouvillian that governs the time evolution of the density matrix. We investigate the relaxation…

统计力学 · 物理学 2021-08-24 Taiki Haga , Masaya Nakagawa , Ryusuke Hamazaki , Masahito Ueda

We demonstrate that open quantum systems exhibiting dynamical phase transitions (DPTs) allow for efficient protocols implementing the Pontus-Mpemba effect. The relaxation speed-up toward a predesignated target state is tied to the existence…

量子物理 · 物理学 2025-12-25 Andrea Nava , Reinhold Egger , Bidyut Dey , Domenico Giuliano

Liouvillian skin effects, manifested as the localization of Liouvillian eigenstates around the boundary, are distinctive features of non-Hermitian systems and are particularly notable for their impact on system dynamics. Despite their…

介观与纳米尺度物理 · 物理学 2026-02-04 Yuta Shigedomi , Tsuneya Yoshida

Mpemba effects occur after a sudden quench of control parameters if for ''far'' (or ''hot'') initial states with respect to a final target state, the relaxation time toward the target state is shorter than for ''close'' (or ''cold'')…

量子物理 · 物理学 2025-10-06 Andrea Nava , Reinhold Egger

We propose a novel approach to engineer the quantum Mpemba effect (QME)-wherein an initial state farther from the steaty state relaxes faster than a closer one-by the Liouvillian skin effect (LSE) in open quantum systems. We show that, in…

量子物理 · 物理学 2026-01-29 Xiang Zhang , Chen Sun , Fuxiang Li

One of the unique features of non-Hermitian Hamiltonians is the non-Hermitian skin effect, namely that the eigenstates are exponentially localized at the boundary of the system. For open quantum systems, a short-time evolution can often be…

量子气体 · 物理学 2019-11-01 Fei Song , Shunyu Yao , Zhong Wang

Understanding how symmetry constrains dissipative relaxation in open quantum many-body systems remains a central challenge in nonequilibrium physics. Here we uncover a symmetry-selective Liouvillian mechanism that protects an isolated…

量子物理 · 物理学 2026-05-21 Zijun Wei , Mingdi Xu , Yefeng Song , Yangqian Yan , Lei Pan

Non-equilibrium dynamics in non-Hermitian systems has attracted significant interest, particularly due to the skin effect and its associated anomalous phenomena. Previous studies have primarily focused on initial states with a definite…

量子物理 · 物理学 2025-11-05 Sibo Guo , Shuai Yin , Shi-Xin Zhang , Zi-Xiang Li

Non-Hermitian skin effect, the localization of an extensive number of eigenstates at the ends of the system, has greatly expanded the frontier of physical laws. It has long been believed that the present of skin modes is equivalent to the…

介观与纳米尺度物理 · 物理学 2023-04-17 Gang-Feng Guo , Xi-Xi Bao , Han-Jie Zhu , Xiao-Ming Zhao , Lin Zhuang , Lei Tan , Wu-Ming Liu

The quantum Mpemba effect (QMPE), an anomalous relaxation phenomenon, has been demonstrated in both closed and open Hermitian quantum systems. While some studies have linked the QMPE to Liouvillian exceptional points--non-Hermitian features…

量子物理 · 物理学 2025-12-16 Wanchen Ma , Junjie Liu

The interplay between dissipation, topology and sensitivity to boundary conditions has recently attracted tremendous amounts of attention at the level of effective non-Hermitian descriptions. Here we exactly solve a quantum mechanical…

量子物理 · 物理学 2022-06-07 Fan Yang , Qing-Dong Jiang , Emil J. Bergholtz

Quantum Mpemba effect describes an anomalous phenomenon of accelerated relaxation which is of fundamental interest in the field of nonequilibrium thermodynamics. Conventional theories on this phenomenon strongly rely on the Born-Markovian…

量子物理 · 物理学 2026-03-23 Ze-Zhou Zhang , Hong-Gang Luo , Wei Wu

Open quantum systems provide a plethora of exotic topological phases of matter that has no Hermitian counterpart. Non-Hermitian skin effect, macroscopic collapse of bulk states to the boundary, has been extensively studied in various…

强关联电子 · 物理学 2023-09-15 Beom Hyun Kim , Jae-Ho Han , Moon Jip Park

The skin effect has been discovered in non-Hermitian Hamiltonian systems where all the eigenstates have their amplitudes concentrating to the open boundaries of the systems and decaying exponentially into the bulk. Later, certain open…

量子物理 · 物理学 2022-10-05 Ziheng Zhou , Zhenhua Yu
‹ 上一页 1 2 3 10 下一页 ›