High coherence plane breaking packaging for superconducting qubits.

IF 5.6 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY
Quantum Science and Technology Pub Date : 2018-04-01 Epub Date: 2018-02-07 DOI:10.1088/2058-9565/aaa645
Nicholas T Bronn, Vivekananda P Adiga, Salvatore B Olivadese, Xian Wu, Jerry M Chow, David P Pappas
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引用次数: 0

Abstract

We demonstrate a pogo pin package for a superconducting quantum processor specifically designed with a nontrivial layout topology (e.g., a center qubit that cannot be accessed from the sides of the chip). Two experiments on two nominally identical superconducting quantum processors in pogo packages, which use commercially available parts and require modest machining tolerances, are performed at low temperature (10 mK) in a dilution refrigerator and both found to behave comparably to processors in standard planar packages with wirebonds where control and readout signals come in from the edges. Single- and two-qubit gate errors are also characterized via randomized benchmarking, exhibiting similar error rates as in standard packages, opening the possibility of integrating pogo pin packaging with extensible qubit architectures.

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超导量子比特的高相干平面破缺封装。
我们展示了一种用于超导量子处理器的 pogo 引脚封装,这种封装专门设计用于非难布局拓扑(例如,无法从芯片两侧访问中心量子位)。在稀释冰箱中的低温(10 mK)条件下,对两个采用 Pogo 封装的名义上完全相同的超导量子处理器进行了实验,结果发现这两个处理器的性能与采用线键的标准平面封装的处理器相当,后者的控制和读出信号来自边缘。单量子比特和双量子比特栅极误差也通过随机基准测试进行了鉴定,显示出与标准封装类似的误差率,为将 pogo pin 封装与可扩展量子比特架构集成提供了可能性。
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来源期刊
Quantum Science and Technology
Quantum Science and Technology Materials Science-Materials Science (miscellaneous)
CiteScore
11.20
自引率
3.00%
发文量
133
期刊介绍: Driven by advances in technology and experimental capability, the last decade has seen the emergence of quantum technology: a new praxis for controlling the quantum world. It is now possible to engineer complex, multi-component systems that merge the once distinct fields of quantum optics and condensed matter physics. Quantum Science and Technology is a new multidisciplinary, electronic-only journal, devoted to publishing research of the highest quality and impact covering theoretical and experimental advances in the fundamental science and application of all quantum-enabled technologies.
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