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首页> 外文期刊>Physical review >Consistent perturbative treatment of the subohmic spin-boson model yielding arbitrarily small T_2/T_1 decoherence time ratios
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Consistent perturbative treatment of the subohmic spin-boson model yielding arbitrarily small T_2/T_1 decoherence time ratios

机译:亚欧姆自旋玻色子模型的一致摄动处理产生任意小的T_2 / T_1退相干时间比

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摘要

We present a perturbative treatment of the subohmic spin-boson model which remedies a crucial flaw in previous treatments. The problem is traced back to the incorrect application of a Markov type approximation to specific terms in the temporal evolution of the reduced density matrix. The modified solution is consistent both with numerical simulations and the exact solution obtained when the bath-coupling spin-space direction is parallel to the qubit energy-basis spin. We therefore demonstrate that the subohmic spin-boson model is capable of describing arbitrarily small ratios of the T_2 and T_1 decoherence times, associated with the decay of the off-diagonal and diagonal reduced density-matrix elements, respectively. An analytical formula for T_2/ T_1 at the absolute zero of temperature is provided in the limit of a subohmic bath with vanishing spectral power law exponent. Small ratios closely mimic the experimental results for solid state (flux) qubits, which are subject predominantly to low-frequency electromagnetic noise, and we suggest a reanalysis of the corresponding experimental data in terms of a nonanalytic decay of off-diagonal coherence.
机译:我们介绍了亚欧姆自旋玻色子模型的摄动治疗,它可以弥补以前治疗中的关键缺陷。该问题可追溯到在降低密度矩阵的时间演化过程中对特定项不正确地应用了马尔可夫类型近似。修改后的解与数值模拟和浴耦合自旋空间方向平行于量子位能基自旋时获得的精确解都一致。因此,我们证明了亚欧姆自旋玻色子模型能够描述任意较小的T_2和T_1退相干时间比率,分别与非对角线和对角线减小的密度矩阵元素的衰减相关。在具有绝对谱功率定律指数消失的亚欧姆浴的极限范围内,提供了温度绝对为零时T_2 / T_1的解析公式。较小的比率非常类似于固态(通量)量子比特的实验结果,固态量子比特主要受到低频电磁噪声的影响,因此我们建议对非对角相干的非解析衰减重新分析相应的实验数据。

著录项

  • 来源
    《Physical review》 |2014年第22期|220302.1-220302.5|共5页
  • 作者

    Kyung-Joo Noh; Uwe R. Fischer;

  • 作者单位

    Seoul National University, Department of Physics and Astronomy and Center for Theoretical Physics, Seoul 151-747, Korea;

    Seoul National University, Department of Physics and Astronomy and Center for Theoretical Physics, Seoul 151-747, Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    boson systems;

    机译:玻色子系统;

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