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基于激子极化激元非线性的光学双稳性和空间谐振孤子。

Optical bistability and spatial resonator solitons based on exciton-polariton nonlinearity.

作者信息

Larionova Ye, Stolz W, Weiss C O

机构信息

Physikalisch-Technische Bundesanstalt, 38116 Braunschweig, Germany.

出版信息

Opt Lett. 2008 Feb 15;33(4):321-3. doi: 10.1364/ol.33.000321.

Abstract

We show experimentally optical bistability and the existence of bright and dark resonator solitons in the strong coupling regime between quantum-well excitons and the optical field in a semiconductor microcavity. The strong coupling results in a quasi-particle exciton-polariton, which gives access to positive and negative reactive and dissipative optical nonlinearities, as opposed to the usual room temperature semiconductor nonlinearities possessing essentially only one sign. The existence range and the properties of solitons can be varied widely by the detuning between polariton states and light frequency.

摘要

我们通过实验展示了在半导体微腔中量子阱激子与光场的强耦合 regime 下的光学双稳性以及亮孤子和暗孤子的存在。强耦合导致了一种准粒子激子极化激元,它可以产生正负反应性和耗散性光学非线性,这与通常仅具有一种符号的室温半导体非线性不同。通过极化激元态与光频率之间的失谐,可以广泛地改变孤子的存在范围和性质。

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