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随机基准测试实际测量的内容。

What Randomized Benchmarking Actually Measures.

作者信息

Proctor Timothy, Rudinger Kenneth, Young Kevin, Sarovar Mohan, Blume-Kohout Robin

机构信息

Sandia National Laboratories, Livermore, California 94550, USA.

Center for Computing Research, Sandia National Laboratories, Albuquerque, New Mexico 87185, USA.

出版信息

Phys Rev Lett. 2017 Sep 29;119(13):130502. doi: 10.1103/PhysRevLett.119.130502. Epub 2017 Sep 28.

Abstract

Randomized benchmarking (RB) is widely used to measure an error rate of a set of quantum gates, by performing random circuits that would do nothing if the gates were perfect. In the limit of no finite-sampling error, the exponential decay rate of the observable survival probabilities, versus circuit length, yields a single error metric r. For Clifford gates with arbitrary small errors described by process matrices, r was believed to reliably correspond to the mean, over all Clifford gates, of the average gate infidelity between the imperfect gates and their ideal counterparts. We show that this quantity is not a well-defined property of a physical gate set. It depends on the representations used for the imperfect and ideal gates, and the variant typically computed in the literature can differ from r by orders of magnitude. We present new theories of the RB decay that are accurate for all small errors describable by process matrices, and show that the RB decay curve is a simple exponential for all such errors. These theories allow explicit computation of the error rate that RB measures (r), but as far as we can tell it does not correspond to the infidelity of a physically allowed (completely positive) representation of the imperfect gates.

摘要

随机基准测试(RB)被广泛用于测量一组量子门的错误率,其做法是执行一些随机电路,这些电路在门是完美的情况下不会产生任何作用。在没有有限采样误差的极限情况下,可观测量存活概率相对于电路长度的指数衰减率会产生一个单一的错误度量r。对于由过程矩阵描述的具有任意小误差的克利福德门,人们认为r可靠地对应于所有克利福德门中不完美门与其理想对应门之间平均门保真度的平均值。我们表明,这个量并不是物理门集的一个定义明确的属性。它取决于不完美门和理想门所使用的表示,并且文献中通常计算的变体可能与r相差几个数量级。我们提出了新的RB衰减理论,这些理论对于过程矩阵可描述的所有小误差都是准确的,并表明对于所有此类误差,RB衰减曲线都是简单的指数形式。这些理论允许明确计算RB所测量的错误率(r),但据我们所知,它并不对应于不完美门的物理允许(完全正定)表示的保真度。

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