论文标题
实验证明通过量子转向远程造成Wigner负性
Experimental demonstration of remotely creating Wigner negativity via quantum steering
论文作者
论文摘要
由于其在量子计算和量子计量学中的潜在应用,具有Wigner负性的非高斯州在量子技术中特别感兴趣。但是,如何在远程位置创建此类状态仍然是一个挑战,这对于在网络中遥远的节点之间有效分配量子资源很重要。在这里,我们通过局部非高斯操作在远程节点上在远程节点上进行实验性的非高斯态,并共享高斯纠缠状态现有量子转向。通过在一种模式下执行光子减法,在远程目标模式下创建了Wigner负性。我们表明,Wigner负性对目标模式的损失很敏感,但是在执行光子减法的模式下损失稳健。该实验证实了远程创建的Wigner负性和量子转向之间的联系。作为一种应用,我们表明,生成的非高斯州在量子相估计中表现出计量能力。
Non-Gaussian states with Wigner negativity are of particular interest in quantum technology due to their potential applications in quantum computing and quantum metrology. However, how to create such states at a remote location remains a challenge, which is important for efficiently distributing quantum resource between distant nodes in a network. Here, we experimentally prepare optical non-Gaussian state with negative Wigner function at a remote node via local non-Gaussian operation and shared Gaussian entangled state existing quantum steering. By performing photon subtraction on one mode, Wigner negativity is created in the remote target mode. We show that the Wigner negativity is sensitive to loss on the target mode, but robust to loss on the mode performing photon subtraction. This experiment confirms the connection between the remotely created Wigner negativity and quantum steering. As an application, we present that the generated non-Gaussian state exhibits metrological power in quantum phase estimation.