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Relaxation of a two-level system strongly coupled to a reservoir: Anomalously slow decoherence

机译:放松一个强烈耦合到水库的两级系统:异常缓慢的干式灭菌

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Relaxation of a two-level system (TLS) into a resonant infinite-temperature reservoir with a Lorentzian spectrum is studied. The reservoir is described by a complex Gaussian-Markovian field coupled to the nondiagonal elements of the TLS Hamiltonian. The theory can be relevant for electromagnetic interactions in microwave high-Q cavities and muon spin depolarization. Analytical results are obtained for the strong-coupling regime, Ω_0 υ, where Ω_0 is the rms coupling amplitude (Rabi frequency) and υ is the width of the reservoir spectrum. In this regime, the population difference and half of the initial coherence decay with two characteristic rates: the most part of the decay occurs at t ~Ω_0~(-1), the relaxation being reversible for t (Ω_0~2υ)~(-1/3), whereas for t (Ω_0~2υ)~(-1/3) the relaxation becomes irreversible and is practically over. The other half of the coherence decays with the rate on the order of υ, which may be slower by orders of magnitude than the time scale of the population relaxation. The above features are explained by the fact that at t υ~(-1) the reservoir temporal fluctuations are effectively one-dimensional (adiabatic). Moreover, we identify the pointer basis, in which the reduction of the state vector occurs. The pointer states are correlated with the reservoir, being dependent on the reservoir phase.
机译:研究了双层系统(TLS)进入谐振无限温度水库,具有洛伦兹谱。储存器由耦合到TLS Hamiltonian的非透射元件的复杂高斯 - 马尔可夫领域。该理论可以与微波高Q空腔中的电磁相互作用和μ子旋转去极化相关。为强耦合状态,ω_0υ获得分析结果,其中ω_0是rms耦合幅度(Rabi频率),并且是储层谱的宽度。在这一制度中,人口差异和初始相干衰减的一半具有两个特征率:衰变大部分发生在T〜ω_0〜(-1)时发生,弛豫是可逆的t (ω_0〜2υ)〜 (-1/3),而T (ω_0〜2υ)〜(-1/3)放松变得不可逆转,实际上是结束的。相干一半的一半衰减,速度大约,这可能比数量级慢于人口放松的时间量表。以上特征是通过T υ〜(-1)的事实来解释,储层时间波动是有效的一维(绝热)。此外,我们识别指针的基础,其中发生状态矢量的减少。指针状态与储存器相关,依赖于储存阶段。

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