Zhang Ting, Zhang Yukun, Liu Lu, Fang Xiao-Xu, Zhang Qian-Xi, Yuan Xiao, Lu He
School of Physics, State Key Laboratory of Crystal Materials, Shandong University, Jinan 250100, China.
Center on Frontiers of Computing Studies, School of Computer Science, Peking University, Beijing 100871, China.
Phys Rev Lett. 2024 May 3;132(18):180201. doi: 10.1103/PhysRevLett.132.180201.
Noise is, in general, inevitable and detrimental to practical and useful quantum communication and computation. Under the resource theory framework, resource distillation serves as a generic tool to overcome the effect of noise. Yet, conventional resource distillation protocols generally require operations on multiple copies of resource states, and strong limitations exist that restrict their practical utilities. Recently, by relaxing the setting of resource distillation to only approximating the measurement statistics instead of the quantum state, a resource-frugal protocol, "virtual resource distillation," is proposed, which allows more effective distillation of noisy resources. Here, we report its experimental implementation on a photonic quantum system for the distillation of quantum coherence (up to dimension four) and bipartite entanglement. We show the virtual distillation of the maximal superposed state of dimension four from the state of dimension two, an impossible task in conventional coherence distillation. Furthermore, we demonstrate the virtual distillation of entanglement with operations acting only on a single copy of the noisy Einstein-Podolsky-Rosen (EPR) pair and showcase the quantum teleportation task using the virtually distilled EPR pair with a significantly improved fidelity of the teleported state. These results illustrate the feasibility of the virtual resource distillation method and pave the way for accurate manipulation of quantum resources with noisy quantum hardware.
一般来说,噪声对于实际且有用的量子通信和计算而言是不可避免且有害的。在资源理论框架下,资源提纯是克服噪声影响的通用工具。然而,传统的资源提纯协议通常需要对多个资源态副本进行操作,并且存在严重限制,制约了它们的实际应用。最近,通过将资源提纯的设定放宽到仅近似测量统计量而非量子态,人们提出了一种资源节约型协议“虚拟资源提纯”,它能更有效地提纯有噪声的资源。在此,我们报告其在光子量子系统上用于量子相干(维度高达四维)和二分纠缠提纯的实验实现。我们展示了从二维态提纯出四维最大叠加态的虚拟提纯,这在传统相干提纯中是不可能完成的任务。此外,我们演示了仅对单个有噪声的爱因斯坦 - 波多尔斯基 - 罗森(EPR)对副本进行操作的纠缠虚拟提纯,并展示了使用虚拟提纯的EPR对进行量子隐形传态任务,其中隐形传态态的保真度有显著提高。这些结果说明了虚拟资源提纯方法的可行性,并为利用有噪声的量子硬件精确操纵量子资源铺平了道路。