论文标题
声子对电子自旋共振吸收光谱的影响
Effect of phonons on the electron spin resonance absorption spectrum
论文作者
论文摘要
固态设备中不可避免的振动的存在可以大大改变磁性活性系统中预期的电子自旋共振(ESR)吸收光谱。在这项工作中,我们将声子和温度对具有强$ e \ otimes e $ jahn-teller(JT)效果的分子系统中的ESR信号的影响进行建模。我们的微观模型考虑了与声子模式连续体,自旋轨道耦合,Zeeman效应以及在弱振动磁场下系统的响应的线性JT相互作用。我们为轨道和自旋度的自由度提供了一个lindblad的主方程,其中考虑了一个单声子和两声器的过程,用于调音子诱导的弛豫,并计算了HAM还原因子的热依赖性。我们发现,ESR信号的抑制是由于声子扩展所致,但不是基于轨道淬火的常见假设。我们的结果可用于解释钻石的颜色中心的实验观察到的ESR信号,例如中性的氮无效和钻石中带负电荷的硅脱落颜色中心。
The unavoidable presence of vibrations in solid-state devices can drastically modify the expected electron spin resonance (ESR) absorption spectrum in magnetically active systems. In this work, we model the effect of phonons and temperature on the ESR signal in molecular systems with strong $E \otimes e$ Jahn-Teller (JT) effect and an electronic spin-$1/2$. Our microscopic model considers the linear JT interaction with a continuum of phonon modes, the spin-orbit coupling, the Zeeman effect, and the response of the system under a weak oscillating magnetic field. We derive a Lindblad master equation for the orbital and spin degrees of freedom, where one- and two-phonon processes are considered for the phonon-induced relaxation, and the thermal dependence of Ham reduction factors is calculated. We find that the suppression of ESR signals is due to phonon broadening but not based on the common assumption of orbital quenching. Our results can be applied to explain the experimentally observed absence of the ESR signal in color centers in diamond, such as the neutral nitrogen-vacancy and negatively charged silicon-vacancy color centers in diamond.