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Decoherence in Josephson vortex quantum bits: Long-Josephson-junction approach to a two-state system

机译:约瑟夫森涡旋量子比特中的退相干:两态系统的长约瑟夫森结方法

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摘要

We investigated decoherence of a Josephson vortex quantum bit (qubit) in dissipative and noisy environment. As the Josephson vortex qubit (JVQ) is fabricated by using a long Josephson junction (LJJ), we use the perturbed sine-Gordon equation to describe the phase dynamics representing a two-state system and estimate the effects of quasiparticle dissipation and weakly fluctuating critical and bias currents on the relaxation time T_1 and on the dephasing time T_φ. We show that the critical current fluctuation does not contribute to dephasing of the qubit in the lowest order approximation. Modeling the weak current variation from magnetic field fluctuations in the LJJ by using the Gaussian colored noise with long correlation time, we show that the coherence time T_2 is limited by the low frequency current noise at very low temperatures. Also, we show that a ultra-long coherence time may be obtained from the JVQ by using experimentally accessible value of physical parameters.
机译:我们研究了在耗散和嘈杂的环境中约瑟夫森涡旋量子比特(qubit)的退相干。由于约瑟夫森涡旋量子位(JVQ)是通过使用长约瑟夫森结(LJJ)制造的,因此我们使用扰动的正弦Gordon方程来描述表示两态系统的相动力学,并估计准粒子耗散和弱波动临界点的影响在松弛时间T_1和相移时间T_φ上有偏置电流。我们表明,临界电流波动不会以最低阶近似来促进qubit的移相。利用具有较长相关时间的高斯彩色噪声对LJJ中磁场波动产生的弱电流变化进行建模,我们表明相干时间T_2受非常低温度下的低频电流噪声限制。此外,我们显示可以通过使用物理参数的实验可访问值从JVQ获得超长的相干时间。

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