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Noise and Decoherence in Quantum Two-Level Systems

机译:量子二能级系统中的噪声和退相干

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摘要

Motivated by recent experiments with Josephson-junction circuits we reconsider decoherence effects in quantum two-level systems (TLS). On one hand, the experiments demonstrate the importance of 1/f noise, on the other hand, by operating at symmetry points one can suppress noise effects in linear order. We, therefore, analyze noise sources with a variety of power spectra, with linear or quadratic coupling, which are longitudinal or transverse relative to the eigenbasis of the unperturbed Hamiltonian. To evaluate the dephasing time for transverse 1/f noise second-order contributions have to be taken into account. Manipulations of the quantum state of the TLS define characteristic time scales. We discuss the consequences for relaxation and dephasing processes.
机译:受约瑟夫森结电路的最新实验的启发,我们重新考虑了量子二能级系统(TLS)中的退相干效应。一方面,实验证明了1 / f噪声的重要性,另一方面,通过在对称点上进行操作,可以按线性顺序抑制噪声影响。因此,我们用线性或二次耦合分析具有各种功率谱的噪声源,这些功率谱相对于未受干扰的哈密顿量的本征基是纵向还是横向。为了评估横向1 / f噪声的移相时间,必须考虑二阶贡献。 TLS量子状态的操作定义了特征时间标度。我们讨论了放松和移相过程的后果。

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