论文标题
缺陷 - 波相互作用的工程非马克维亚性
Engineering non-Markovianity from defect-phonon interactions
论文作者
论文摘要
了解固态设备中的缺陷 - phonon相互作用对于提高我们当前对量子平台的了解至关重要。在这项工作中,我们开发了一个缺陷的第一原理计算,该缺陷由两个旋转$ 1/2 $粒子组成,它们在一维晶格中与声子模式相互作用。我们遵循一种自下而上的方法,该方法从偶极磁相互作用开始,最终得出了描述缺陷的开放动力学的光谱密度函数和时间局部主方程。我们提供理论和数值分析,用于由作用于钟形的纯dephasing通道引起的缺陷 - phonon动力学的非马克维亚特征。最后,我们根据规范速率和连贯性分析了两项非马克维亚性的度量,从而更多地了解了光谱密度函数和温度的作用。并设想实验实现。
Understanding defect-phonon interactions in solid-state devices is crucial for improving our current knowledge of quantum platforms. In this work, we develop first-principles calculations for a defect composed of two spin-$1/2$ particles that interact with phonon modes in a one-dimensional lattice. We follow a bottom-up approach that begins with a dipolar magnetic interaction to ultimately derive the spectral density function and time-local master equation that describes the open dynamics of the defect. We provide theoretical and numerical analysis for the non-Markovian features of the defect-phonon dynamics induced by a pure dephasing channel acting on the Bell basis. Finally, we analyze two measures of non-Markovianity based on the canonical rates and Coherence, shedding more light on the role of the spectral density function and temperature; and envisioning experimental realizations.