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环形阱中具有极化激元超流体的量子比特模拟器。

Qubit analog with polariton superfluid in an annular trap.

作者信息

Barrat Joris, Tzortzakakis Andreas F, Niu Meng, Zhou Xiaoqing, Paschos Giannis G, Petrosyan David, Savvidis Pavlos G

机构信息

Department of Physics, Fudan University, Shanghai 200433, China.

Key Laboratory for Quantum Materials of Zhejiang Province, Physics Department, Westlake University, 18 Shilongshan Rd, Hangzhou 310024, Zhejiang, China.

出版信息

Sci Adv. 2024 Oct 25;10(43):eado4042. doi: 10.1126/sciadv.ado4042. Epub 2024 Oct 23.

Abstract

We report on the experimental realization and characterization of a qubit analog with semiconductor exciton-polaritons. In our system, a polaritonic condensate is confined by a spatially patterned pump laser in an annular trap that supports energy-degenerate vortex states of the polariton superfluid. Using temporal interference measurements, we observe coherent oscillations between a pair of counter-circulating vortex states coupled by elastic scattering of polaritons off the laser-imprinted potential. The qubit basis states correspond to the symmetric and antisymmetric superpositions of the two vortex states. By engineering the potential, we tune the coupling and coherent oscillations between the two circulating current states, control the energies of the qubit basis states, and initialize the qubit in the desired state. The dynamics of the system is accurately reproduced by our theoretical two-state model, and we discuss potential avenues to implement quantum gates and algorithms with polaritonic qubits analogous to quantum computation with standard qubits.

摘要

我们报告了一种具有半导体激子极化激元的量子比特类似物的实验实现和表征。在我们的系统中,极化激元凝聚体由空间图案化的泵浦激光限制在一个环形陷阱中,该陷阱支持极化激元超流体的能量简并涡旋态。通过时间干涉测量,我们观察到一对通过极化激元在激光印记势上的弹性散射而耦合的反向循环涡旋态之间的相干振荡。量子比特基态对应于两个涡旋态的对称和反对称叠加。通过设计势,我们调节两个循环电流态之间的耦合和相干振荡,控制量子比特基态的能量,并将量子比特初始化为所需状态。我们的理论两态模型准确地再现了系统的动力学,并且我们讨论了用极化激元量子比特实现量子门和算法的潜在途径,类似于用标准量子比特进行量子计算。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/205b/11498216/2c0064220714/sciadv.ado4042-f1.jpg

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