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Quantum Langevin approach for non-Markovian quantum dynamics of the spin-boson model

机译:Quantum Langevin旋转玻色子模型的非马上量子动态方法

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摘要

One longstanding difficult problem in quantum dissipative dynamics is to solve the spin-boson model in a non-Markovian regime where a tractable systematic master equation does not exist. The spin-boson model is particularly important due to its crucial applications in quantum noise control and manipulation as well as its central role in developing quantum theories of open systems. Here we solve this important model by developing a non-Markovian quantum Langevin approach. By projecting the quantum Langevin equation onto the coherent states of the bath, we can derive a set of non-Markovian quantum Bloch equations containing no explicit noise variables. This special feature offers a tremendous advantage over the existing stochastic Schrodinger equations in numerical simulations. The physical significance and generality of our approach are briefly discussed.
机译:量子耗散动力学中的一个长期困难问题是在非马上标准中解决旋转玻色子模型,其中不存在易解系统母版方程。 由于其在量子噪声控制和操纵中的关键应用以及在开发开放系统的量子理论方面的核心作用,旋转玻色子模型尤为重要。 在这里,我们通过开发非马铃志量子Langevin方法来解决这一重要模式。 通过将量子Langevin方程投影到浴缸的相干状态,我们可以导出一组不包含明确噪声变量的非马铃薯QuantumBloch方程。 该特殊功能在数值模拟中的现有随机薛定格格方程上提供了巨大的优势。 简要讨论了我们方法的物理意义和普遍性。

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