Wang Zhiling, Bao Zenghui, Wu Yukai, Li Yan, Cai Weizhou, Wang Weiting, Ma Yuwei, Cai Tianqi, Han Xiyue, Wang Jiahui, Song Yipu, Sun Luyan, Zhang Hongyi, Duan Luming
Center for Quantum Information, Institute for Interdisciplinary Information Sciences, Tsinghua University, Beijing 100084, PR China.
Sci Adv. 2022 Mar 11;8(10):eabn1778. doi: 10.1126/sciadv.abn1778.
Schrödinger's cat originates from the famous thought experiment querying the counterintuitive quantum superposition of macroscopic objects. As a natural extension, several "cats" (quasi-classical objects) can be prepared into coherent quantum superposition states, which is known as multipartite cat states demonstrating quantum entanglement among macroscopically distinct objects. Here, we present a highly scalable approach to deterministically create flying multipartite Schrödinger's cat states by reflecting coherent-state photons from a microwave cavity containing a superconducting qubit. We perform full quantum state tomography on the cat states with up to four photonic modes and confirm the existence of quantum entanglement among them. We also witness the hybrid entanglement between discrete-variable states (the qubit) and continuous-variable states (the flying multipartite cat) through a joint quantum state tomography. Our work provides an enabling step for implementing a series of quantum metrology and quantum information processing protocols based on cat states.
薛定谔的猫源自一个著名的思想实验,该实验质疑宏观物体违反直觉的量子叠加。作为自然的延伸,可以将几个“猫”(准经典物体)制备成相干量子叠加态,这被称为多体猫态,展示了宏观上不同物体之间的量子纠缠。在此,我们提出一种高度可扩展的方法,通过从包含超导量子比特的微波腔反射相干态光子,确定性地创建飞行多体薛定谔猫态。我们对多达四个光子模式的猫态进行了全量子态层析成像,并确认了它们之间量子纠缠的存在。我们还通过联合量子态层析成像见证了离散变量态(量子比特)和连续变量态(飞行多体猫)之间的混合纠缠。我们的工作为基于猫态实现一系列量子计量和量子信息处理协议提供了关键一步。