论文标题

经典通信增强量子状态验证

Classical Communication Enhanced Quantum State Verification

论文作者

Zhang, Wen-Hao, Liu, Xiao, Yin, Peng, Peng, Xing-Xiang, Li, Gong-Chu, Xu, Xiao-Ye, Yu, Shang, Hou, Zhi-Bo, Han, Yong-Jian, Xu, Jin-Shi, Zhou, Zong-Quan, Chen, Geng, Li, Chuan-Feng, Guo, Guang-Can

论文摘要

量子状态验证提供了一种有效的方法来表征量子设备的可靠性,以生成某些目标状态。特定策略的优点数字是,鉴于一定数量的测量n,已测试状态的估计不忠$ε$ n。纠缠的测量构成了全球最佳策略,并实现了εis与n成反比的缩放。最近的进步表明,可以简单地通过非自适应局部测量来实现相同的缩放,但是,性能仍然比全球最佳绑定到恒定因素要差。在这项工作中,通过引入古典交流,我们通过实验实现自适应量子状态验证。在本实验中,恒定因子从〜2.5到1.5最小化,这意味着仅需要进行60%的测量来实现与最佳非自适应局部策略相关的一定值ε的一定值。我们的结果表明,经典交流可显着提高量子状态验证的性能,并导致进一步接近全球最佳结合的效率。

Quantum state verification provides an efficient approach to characterize the reliability of quantum devices for generating certain target states. The figure of merit of a specific strategy is the estimated infidelity $ε$ of the tested state to the target state, given a certain number of performed measurements n. Entangled measurements constitute the globally optimal strategy and achieve the scaling that εis inversely proportional to n. Recent advances show that it is possible to achieve the same scaling simply with non-adaptive local measurements, however, the performance is still worse than the globally optimal bound up to a constant factor. In this work, by introducing classical communication, we experimentally implement an adaptive quantum state verification. The constant-factor is minimized from ~2.5 to 1.5 in this experiment, which means that only 60% measurements are required to achieve a certain value of εcompared to optimal non-adaptive local strategy. Our results indicate that classical communication significantly enhances the performance of quantum state verification, and leads to an efficiency that further approaches the globally optimal bound.

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