论文标题
抑制任意大小的黑匣子量子操作的错误
Error Suppression for Arbitrary-Size Black Box Quantum Operations
论文作者
论文摘要
没有完全错误校正的错误抑制错误对于使用NISQ设备的应用至关重要。错误缓解措施使我们能够在提取期望值时抑制错误,而无需任何错误校正代码,但其应用程序仅限于估计期望值,并且不能为我们提供对任意量子状态作用的高保真量子操作。为了应对这一挑战,我们建议将误差过滤(EF)用于基于门的量子计算,作为一种实用的误差抑制方案,而无需诉诸于完全量子误差校正。结果是一种通用抑制协议,其中抑制误差所需的资源独立于量子操作的大小,并且不需要对操作的任何逻辑编码。每当尊重误差层次结构时,该协议就会提供误差抑制 - 也就是说,当辅助CSWAP操作不如要纠正的操作嘈杂时。我们进一步分析了EF在量子随机访问内存中的应用,在该内存中,EF提供了硬件有效的误差抑制。
Efficient suppression of errors without full error correction is crucial for applications with NISQ devices. Error mitigation allows us to suppress errors in extracting expectation values without the need for any error correction code, but its applications are limited to estimating expectation values, and cannot provide us with high-fidelity quantum operations acting on arbitrary quantum states. To address this challenge, we propose to use error filtration (EF) for gate-based quantum computation, as a practical error suppression scheme without resorting to full quantum error correction. The result is a general-purpose error suppression protocol where the resources required to suppress errors scale independently of the size of the quantum operation, and does not require any logical encoding of the operation. The protocol provides error suppression whenever an error hierarchy is respected -- that is, when the ancilliary cSWAP operations are less noisy than the operation to be corrected. We further analyze the application of EF to quantum random access memory, where EF offers hardware-efficient error suppression.