Jafari R, Asadian A, Abdi M, Akbari Alireza
Department of Physics, Institute for Advanced Studies in Basic Sciences (IASBS), 45137-66731, Zanjan, Iran.
School of Quantum Physics and Matter, Institute for Research in Fundamental Sciences (IPM), 19538-33511, Tehran, Iran.
Sci Rep. 2025 May 13;15(1):16582. doi: 10.1038/s41598-025-00815-8.
We analyze the decoherence dynamics of a central spin coupled to a spin chain with a time-dependent noisy magnetic field, focusing on how noise influences the system's decoherence. Our results show that decoherence due to the nonequilibrium critical dynamics of the environment is amplified in the presence of uncorrelated and correlated Gaussian noise. We demonstrate that decoherence factor consistently signals the critical points, and exhibits exponential scaling with the system size, the square of noise intensity, and the noise correlation time at the critical points. We find that strong coupling between the qubit and the environment leads to partial revivals of decoherence, which diminish with increasing noise intensity or decreasing noise correlation time. In contrast, weak coupling leads to monotonic enhanced decoherence. The numerical results illustrate that, the revivals decay and scale exponentially with noise intensity. Moreover, the revivals increase and indicate linear or power law scaling with noise correlation time depending on how the correlated noise is fast or slow. Additionally, we explore the non-Markovianity of the dynamics, finding that it decays in the presence of noise but increases as the noise correlation time grows.
我们分析了一个与具有随时间变化的噪声磁场的自旋链耦合的中心自旋的退相干动力学,重点关注噪声如何影响系统的退相干。我们的结果表明,在存在不相关和相关高斯噪声的情况下,由于环境的非平衡临界动力学导致的退相干会被放大。我们证明,退相干因子始终能标志临界点,并在临界点处随系统大小、噪声强度的平方以及噪声关联时间呈指数缩放。我们发现,量子比特与环境之间的强耦合会导致退相干的部分恢复,这种恢复会随着噪声强度的增加或噪声关联时间的减少而减弱。相比之下,弱耦合会导致退相干单调增强。数值结果表明,恢复会随着噪声强度呈指数衰减和缩放。此外,恢复会增加,并根据相关噪声是快还是慢而随噪声关联时间呈线性或幂律缩放。此外,我们还研究了动力学的非马尔可夫性,发现它在存在噪声时会衰减,但会随着噪声关联时间的增长而增加。