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We investigate the trends of information backflow associated with the dynamics of a sub-part of a disordered spin-1/2 transverse field Heisenberg chain for different regimes of the Hamiltonian. Towards this aim, the decay profile of…

量子物理 · 物理学 2020-03-16 Sudipto Singha Roy , Utkarsh Mishra , Debraj Rakshit

Quantum non Markovianity and quantum Darwinism are two phenomena linked by a common theme: the flux of quantum information between a quantum system and the quantum environment it interacts with. In this work, making use of a quantum…

量子物理 · 物理学 2020-02-03 Salvatore Lorenzo , Mauro Paternostro , G. Massimo Palma

We address the dynamics of quantum correlations for a bipartite continuous-variable quantum system interacting with its fluctuating environment. In particular, we consider two independent quantum oscillators initially prepared in a Gaussian…

量子物理 · 物理学 2016-05-04 J. Trapani , M. G. A. Paris

The return of the information from the environment to the system is a phenomenon can be related to existence of non-Markovian mechanisms in the environment and such transformation of resources can be useful for quantum information…

量子物理 · 物理学 2024-10-31 Taysa M. Mendonça , Lucas C. Céleri , Mauro Paternostro , Diogo O. Soares-Pinto

Quantum non-Markovianity modifies the environmental decoherence of a system. This situation is enriched in complex systems owing to interactions among subsystems. We consider the problem of distinguishing the multiple sources of…

量子物理 · 物理学 2021-03-03 Subhashish Banerjee , Javid Naikoo , R. Srikanth

Memory effects arise in many complex systems, from protein folding, to the spreading of epidemics and financial decisions. While so-called non-Markovian dynamics is common in larger systems with interacting components, observations in…

Non-Markovian dynamics is central to quantum information processing, as memory effects strongly influence coherence preservation, metrology, and communication. In this work, we investigate the role of stochastic system--bath couplings in…

量子物理 · 物理学 2025-09-17 Mehboob Rashid , Rayees A Mala , Saima Bashir , Muzaffar Qadir Lone

The Markovianity of quantum dynamics is an important property of open quantum systems determined by various ingredients of the system and bath. Apart from the system-bath interaction, the initial state of the bath, etc., the dimension of…

量子物理 · 物理学 2023-03-03 Jingyi Fan , Shengshi Pang

We explore signatures of the non-Markovianity in the time-resolved energy transfer processes for quantum open systems. Focusing on typical systems such as the exact solvable damped Jaynes-Cummings model and the general spin-boson model, we…

量子物理 · 物理学 2017-01-19 Junjie Liu , Hui Xu , Changqin Wu

We review the most recent developments in the theory of open quantum systems focusing on situations in which the reservoir memory effects, due to long-lasting and non-negligible correlations between system and environment, play a crucial…

量子物理 · 物理学 2014-03-11 Pinja Haikka , Sabrina Maniscalco

The interpretation of non-Markovian effects as due to the information exchange between an open quantum system and its environment has been recently formulated in terms of properly regularized entropic quantities, as their revivals in time…

量子物理 · 物理学 2022-07-14 Andrea Smirne , Nina Megier , Bassano Vacchini

The exchange of information between an open quantum system and its environment, especially the backflow of information from the environment to the open system associated with quantum notions of non-Markovianity, is a widely discussed topic…

量子物理 · 物理学 2024-12-10 Moritz F. Richter , Heinz-Peter Breuer

The study of open quantum systems is important for fundamental issues of quantum physics as well as for technological applications such as quantum information processing. The interaction of a quantum system with it's environment is usually…

量子物理 · 物理学 2016-02-02 Jun Sun , Yong-Nan Sun , Chuan-Feng Li , Guang-Can Guo , Kimmo Luoma , Jyrki Piilo

Using recently proposed measures for non-Markovianity [H. P. Breuer, E. M. Laine, and J. Piilo, Phys. Rev. Lett. {\bf 103}, 210401 (2009)], we study the dynamics of a qubit coupled to a spin environment via an energy-exchange mechanism. We…

量子物理 · 物理学 2015-05-20 T. J. G. Apollaro , C. Di Franco , F. Plastina , M. Paternostro

The basic features of the dynamics of open quantum systems, such as the dissipation of energy, the decay of coherences, the relaxation to an equilibrium or non-equilibrium stationary state, and the transport of excitations in complex…

量子物理 · 物理学 2012-08-09 Heinz-Peter Breuer

We study a random unitary circuit model of an impurity moving through a chaotic medium. The exchange of information between the medium and impurity is controlled by varying the velocity of the impurity, $v_d$, relative to the speed of…

量子物理 · 物理学 2024-10-11 Dominic Gribben , Jamir Marino , Shane P. Kelly

It is known that entanglement dynamics of two noninteracting qubits, locally subjected to classical environments, may exhibit revivals. A simple explanation of this phenomenon may be provided by using the concept of hidden entanglement,…

量子物理 · 物理学 2014-06-06 A. D'Arrigo , G. Benenti , R. Lo Franco , G. Falci , E. Paladino

We study the influence of a chaotic environment in the evolution of an open quantum system. We show that there is an inverse relation between chaos and non-Markovianity. In particular, we remark on the deep relation of the short time…

量子物理 · 物理学 2012-09-03 I. Garcia-Mata , C. Pineda , D. A. Wisniacki

Superdense coding is a significant technique widely used in quantum information processing. Indeed, it consists of sending two bits of classical information using a single qubit, leading to faster and more efficient quantum communication.…

量子物理 · 物理学 2024-08-21 Y. Aiache , S. Al-Kuwari , K. El Anouz , A. El Allati

Non-Markovian quantum effects are typically observed in systems interacting with structured reservoirs. Discrete-time quantum walks are prime example of such systems in which, quantum memory arises due to the controlled interaction between…

量子物理 · 物理学 2018-07-18 N. Pradeep Kumar , Subhashish Banerjee , C. M. Chandrashekar