Tunable non-Markovian and quantum coherence in the single-qubit dephasing noise channel

被引:0
|
作者
NaNa Zhang [1 ]
ChaoYi Wu [1 ]
Xu Zhou [1 ]
QiYuan Liu [1 ]
ChengGe Liu [2 ]
YongRui Guo [1 ]
RenPu Li [1 ]
机构
[1] School of Optoelectronic Engineering Chongqing University of Posts and Telecommunications
[2] Department of Physics, Applied Optics Beijing Area Major Laboratory, Beijing Normal
关键词
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, we construct a single-qubit dephasing noise channel based on the nuclear magnetic resonance(NMR) system by employing the bath-engineering technology, and achieve the construction of the tunable non-Markovian environment in the dephasing noise channel. Our findings indicate that for the single-qubit system, the transition of system dynamics from Markovian to non-Markovian can be achieved by adjusting the base frequency of the noise power spectrum. However, the base frequency corresponding to this phase transition point is not fixed, and there is a certain relationship between it and the total evolution time of the single-qubit system. Through our research, we discovered a fundamental relationship: if the single-qubit system dynamics undergoe a transition from Markovian to non-Markovian at ω0 within 0-2t ms, shortening the evolution time to 0-t ms results in an increase of the phase transition point to 2ω0. This insight offers crucial guidance for artificially crafting non-Markovian environments across arbitrary time scales in single-qubit systems, and it is not limited by the type of noise. Apart from system dynamics, quantum coherence is also a focal point of our research. We find that when the system dynamics exhibit non-Markovian behavior, the quantum coherence of the single-qubit system experiences revivals. Notably, the timing of these coherence revivals aligns with the instants of the non-Markovianity enhancement. Therefore, our research also serves as a pivotal foundation for the artificial manipulation and realization of quantum coherence revivals within diverse single-qubit systems.
引用
收藏
页码:96 / 105
页数:10
相关论文
共 50 条
  • [1] Tunable non-Markovian and quantum coherence in the single-qubit dephasing noise channel
    Zhang, Na-Na
    Wu, Chao-Yi
    Zhou, Xu
    Liu, Qi-Yuan
    Liu, Cheng-Ge
    Guo, Yong-Rui
    Li, Ren-Pu
    Science China: Physics, Mechanics and Astronomy, 2025, 68 (03):
  • [2] Single-Qubit Error Mitigation by Simulating Non-Markovian Dynamics
    Rossini, Mirko
    Maile, Dominik
    Ankerhold, Joachim
    Donvil, Brecht I. C.
    PHYSICAL REVIEW LETTERS, 2023, 131 (11)
  • [3] Quantum thermometry by single-qubit dephasing
    Sholeh Razavian
    Claudia Benedetti
    Matteo Bina
    Yahya Akbari-Kourbolagh
    Matteo G. A. Paris
    The European Physical Journal Plus, 134
  • [4] Quantum thermometry by single-qubit dephasing
    Razavian, Sholeh
    Benedetti, Claudia
    Bina, Matteo
    Akbari-Kourbolagh, Yahya
    Paris, Matteo G. A.
    EUROPEAN PHYSICAL JOURNAL PLUS, 2019, 134 (06):
  • [5] Decoherence of quantum information in the non-Markovian qubit channel
    Ban, M
    Kitajima, S
    Shibata, F
    JOURNAL OF PHYSICS A-MATHEMATICAL AND GENERAL, 2005, 38 (32): : 7161 - 7174
  • [6] Quantum dephasing induced by non-Markovian random telegraph noise
    Xiangji Cai
    Scientific Reports, 10
  • [7] Quantum dephasing induced by non-Markovian random telegraph noise
    Cai, Xiangji
    SCIENTIFIC REPORTS, 2020, 10 (01)
  • [8] Quantum filter for a non-Markovian single qubit system
    Xue, Shibei
    James, Matthew R.
    Shabani, Alireza
    Ugrinovskii, Valery
    Petersen, Ian R.
    2015 IEEE CONFERENCE ON CONTROL AND APPLICATIONS (CCA 2015), 2015, : 19 - 23
  • [9] Control of a qubit under Markovian and non-Markovian noise
    Delben, G. J.
    Beims, M. W.
    da Luz, G. E.
    PHYSICAL REVIEW A, 2023, 108 (01)
  • [10] Simple non-Markovian microscopic models for the depolarizing channel of a single qubit
    Fonseca Romero, K. M.
    Lo Franco, R.
    PHYSICA SCRIPTA, 2012, 86 (06)