论文标题
操作,无规量子断层扫描
Operational, gauge-free quantum tomography
论文作者
论文摘要
由于在世界各地的实验室中实现了越来越令人印象深刻的量子信息处理器,因此这些设备的强大和可靠表征现在比以往任何时候都更加紧迫。这些诊断可以采用多种形式,但是最受欢迎的类别之一是断层扫描,其中为设备提出了基本的参数化模型,并通过实验推断。在这里,我们介绍并实施有效的操作断层扫描,该层析成像将实验性观察物作为这些模型参数。这解决了当前断层扫描方法(量规问题)中产生的表示中歧义的问题。解决量规问题使我们能够在贝叶斯框架计算中有效地实施操作层析成像,因此使我们自然地包含先前信息并讨论拟合参数中的不确定性。我们在各种不同的实验性场景中演示了这种新的层析成分,包括标准过程断层扫描,拉姆西干涉法,随机基准测试和栅极组层造影。
As increasingly impressive quantum information processors are realized in laboratories around the world, robust and reliable characterization of these devices is now more urgent than ever. These diagnostics can take many forms, but one of the most popular categories is tomography, where an underlying parameterized model is proposed for a device and inferred by experiments. Here, we introduce and implement efficient operational tomography, which uses experimental observables as these model parameters. This addresses a problem of ambiguity in representation that arises in current tomographic approaches (the gauge problem). Solving the gauge problem enables us to efficiently implement operational tomography in a Bayesian framework computationally, and hence gives us a natural way to include prior information and discuss uncertainty in fit parameters. We demonstrate this new tomography in a variety of different experimentally-relevant scenarios, including standard process tomography, Ramsey interferometry, randomized benchmarking, and gate set tomography.