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非共振激发下的旋量极化激元凝聚体中的光学双稳态。

Optical Bistability under Nonresonant Excitation in Spinor Polariton Condensates.

机构信息

School of Physics and Astronomy, University of Southampton, Southampton SO17 1BJ, United Kingdom.

Skolkovo Institute of Science and Technology, Moscow 143026, Russian Federation.

出版信息

Phys Rev Lett. 2018 Jun 1;120(22):225301. doi: 10.1103/PhysRevLett.120.225301.

Abstract

We realize bistability in the spinor of polariton condensates under nonresonant optical excitation and in the absence of biasing external fields. Numerical modeling of the system using the Ginzburg-Landau equation with an internal Josephson coupling between the two spin components of the condensate qualitatively describes the experimental observations. We demonstrate that polariton spin bistability strongly depends on the condensate's overlap with the exciton reservoir by tuning the excitation geometry and sample temperature. We obtain noncollapsing bistability hysteresis loops for a record range of sweep times, [10  μs, 1 s], offering a promising route to spin switches and spin memory elements.

摘要

我们在非共振光激发和无偏置外场的情况下,实现了极化激元凝聚体中旋量的双稳性。使用包含内禀约瑟夫森耦合的吉布斯-朗道方程对系统进行数值建模,定性地描述了实验观测结果。我们通过调整激发几何形状和样品温度,证明了极化激元自旋双稳性强烈依赖于凝聚体与激子库的重叠。我们获得了记录范围内的非崩塌双稳滞后回线,扫频时间范围为[10μs,1s],为自旋开关和自旋存储元件提供了有前景的途径。

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