论文标题
耗散降解率的耗散降解率
Dissipative Landau-Zener transition with decoherence rate
论文作者
论文摘要
具有最少参数数量的创新显微镜模型:使用隧道分裂间隙,外部田间扫描速度和分解速率来描述在腐烂存在下耗散性Landau-Zener转变的动力学。在有限的情况下,派生的运动方程式产生了众所周知的Landau-Zener和Kayanuma公式。在一般情况下,该描述证明了相对于清晰速度的非单调翻转概率,这在其他一些模型中也可以找到。可以通过考虑量子隧道,跨越时期和反矫正过程的竞争和时间表来解释这种非单调。该理论的简单性和鲁棒性为Landau-Zener过渡提供了实用而新颖的描述。此外,它有望在测量相关量子系统的有效分解速率时对电子顺磁共振的替代方法。
An innovative microscopic model with a minimal number of parameters: tunneling splitting gap, external field sweeping velocity, and decoherence rate is used to describe dynamics of the dissipative Landau-Zener transition in the presence of the decoherence. In limiting cases, the derived equation of motion gives rise to the well-known Landau-Zener and Kayanuma formula. In a general case, the description demonstrates a non-monotonic flipping probability with respect to the sweeping velocity, which is also found in some other models. This non-monotony can be explained by considering the competition and timescale of the quantum tunneling, crossing period, and decoherence process. The simplicity and robustness of the theory offer a practical and novel description of the Landau-Zener transition. In addition, it promises an alternative method to the electron paramagnetic resonance in measuring the effective decoherence rate of relevant quantum systems.