论文标题

相关的电荷噪声和超导Qubit的放松误差

Correlated Charge Noise and Relaxation Errors in Superconducting Qubits

论文作者

Wilen, C. D., Abdullah, S., Kurinsky, N. A., Stanford, C., Cardani, L., D'Imperio, G., Tomei, C., Faoro, L., Ioffe, L. B., Liu, C. H., Opremcak, A., Christensen, B. G., DuBois, J. L., McDermott, R.

论文摘要

构建量子计算机的核心挑战是校正。与仅容易受到一种错误的经典位不同,量子位(“ Qubits”)易受两种错误的影响,对应于Qubit状态的翻转,涉及$ x $ - 和$ z $ - directions。虽然海森堡不确定性原理不能同时监视$ x $ - 和$ z $ -Flips在单个量子器上,但只要错误率较低,就可以在大量纠缠量子的Qubits中编码量子信息,以准确地监视系统中的所有错误。另一个关键要求是错误无法关联。在这里,我们表征了一个超导多Quipt的电路,并发现电荷波动在600〜 $ $ m的长度尺度上高度相关。此外,离散电荷跳跃伴随着整个毫米级芯片的量子能量松弛时间的强烈瞬态抑制。根据充电事件和声子介导的准粒子中毒与吸收量子射线的吸收和宇宙射线哑光相关的相关误差。鲁棒的量子误差校正将需要制定缓解策略,以保护多等级阵列免受由于粒子影响而引起的相关误差。

The central challenge in building a quantum computer is error correction. Unlike classical bits, which are susceptible to only one type of error, quantum bits ("qubits") are susceptible to two types of error, corresponding to flips of the qubit state about the $X$- and $Z$-directions. While the Heisenberg Uncertainty Principle precludes simultaneous monitoring of $X$- and $Z$-flips on a single qubit, it is possible to encode quantum information in large arrays of entangled qubits that enable accurate monitoring of all errors in the system, provided the error rate is low. Another crucial requirement is that errors cannot be correlated. Here, we characterize a superconducting multiqubit circuit and find that charge fluctuations are highly correlated on a length scale over 600~$μ$m; moreover, discrete charge jumps are accompanied by a strong transient suppression of qubit energy relaxation time across the millimeter-scale chip. The resulting correlated errors are explained in terms of the charging event and phonon-mediated quasiparticle poisoning associated with absorption of gamma rays and cosmic-ray muons in the qubit substrate. Robust quantum error correction will require the development of mitigation strategies to protect multiqubit arrays from correlated errors due to particle impacts.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源