Department of Physics, Harvard University, Cambridge, MA 02138, USA.
Department of Physics, Gordon College, Wenham, MA 01984, USA.
Science. 2019 Aug 9;365(6453):570-574. doi: 10.1126/science.aax9743.
Quantum entanglement involving coherent superpositions of macroscopically distinct states is among the most striking features of quantum theory, but its realization is challenging because such states are extremely fragile. Using a programmable quantum simulator based on neutral atom arrays with interactions mediated by Rydberg states, we demonstrate the creation of "Schrödinger cat" states of the Greenberger-Horne-Zeilinger (GHZ) type with up to 20 qubits. Our approach is based on engineering the energy spectrum and using optimal control of the many-body system. We further demonstrate entanglement manipulation by using GHZ states to distribute entanglement to distant sites in the array, establishing important ingredients for quantum information processing and quantum metrology.
涉及宏观上不同状态的相干叠加的量子纠缠是量子理论最显著的特征之一,但由于这种状态极其脆弱,因此实现起来具有挑战性。我们使用基于中性原子阵列的可编程量子模拟器,该模拟器通过里德堡态介导相互作用,演示了具有多达 20 个量子比特的“薛定谔猫”态的产生,这种“薛定谔猫”态属于格林柏格-霍恩-泽林格(GHZ)类型。我们的方法基于对能谱的工程设计,并对多体系统进行最佳控制。我们进一步通过使用 GHZ 态将纠缠分布到阵列中的远程站点来演示纠缠操纵,从而为量子信息处理和量子计量学建立了重要的组成部分。