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Normal-metal quasiparticle traps for superconducting qubits

机译:用于超导量子位的法向金属准粒子阱

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摘要

The presence of quasiparticles in superconducting qubits emerges as an intrinsic constraint on their coherence. While it is difficult to prevent the generation of quasiparticles, keeping them away from active elements of the qubit provides a viable way of improving the device performance. Here we develop theoretically and validate experimentally a model for the effect of a single small trap on the dynamics of the excess quasiparticles injected in a transmon-type qubit. The model allows one to evaluate the time it takes to evacuate the injected quasiparticles from the transition as a function of trap parameters. With the increase of the trap size, this time decreases monotonically, saturating at the level determined by the quasiparticles diffusion constant and the qubit geometry. We determine the characteristic trap size needed for the relaxation time to approach that saturation value.
机译:准粒子在超导量子位中的出现是对其相干性的内在约束。虽然很难防止准粒子的产生,但使它们远离量子位的有源元素可以提供一种改善器件性能的可行方法。在这里,我们在理论上开发并通过实验验证了单个小陷阱对跨门型量子比特中注入的过量准粒子动力学的影响的模型。该模型允许人们根据陷阱参数评估从跃迁中撤出注入的准粒子所花费的时间。随着阱尺寸的增加,该时间单调减少,达到了由准粒子扩散常数和量子位几何形状确定的水平。我们确定弛豫时间接近饱和值所需的特征阱尺寸。

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  • 来源
    《Physical review. B, Condensed Matter And Materials Physics》 |2016年第10期|104516.1-104516.10|共10页
  • 作者单位

    Peter Gruenberg Institut (PGI-2) andJARA Institute for Quantum Information, Forschungszentrum Juelich, 52425 Juelich, Germany,Departments of Physics and Applied Physics, Yale University, New Haven, Connecticut 06520, USA;

    Peter Gruenberg Institut (PGI-2) andJARA Institute for Quantum Information, Forschungszentrum Juelich, 52425 Juelich, Germany,JARA-Institute for Quantum Information, RWTH Aachen University, D-52056 Aachen, Germany;

    Departments of Physics and Applied Physics, Yale University, New Haven, Connecticut 06520, USA;

    Departments of Physics and Applied Physics, Yale University, New Haven, Connecticut 06520, USA;

    Departments of Physics and Applied Physics, Yale University, New Haven, Connecticut 06520, USA;

    Departments of Physics and Applied Physics, Yale University, New Haven, Connecticut 06520, USA;

    Peter Gruenberg Institut (PGI-2) andJARA Institute for Quantum Information, Forschungszentrum Juelich, 52425 Juelich, Germany;

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