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Optical probing in a bilayer dark-bright condensate system

机译:双层深色凝结水系统中的光学探测

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We consider a bilayer system of two-dimensional Bose-Einstein-condensed dipolar dark excitons (upper layer) and bright ones (bottom layer). We demonstrate that the interlayer interaction leads to a mixing between excitations from different layers. This mixing leads to the appearance of a second spectral branch in the spectrum of bright condensate. The excitation spectrum of the condensate of dark dipolar excitons then becomes optically accessible during luminescence spectra measurements of the bright condensate, which allows one to probe its kinetic properties. This approach is relevant for experimental setups, where detection via conventional techniques remains challenging; in particular, the suggested method is useful for studying dark dipolar excitons in transition metal dichalcogenide monolayers.
机译:我们考虑二维Bose-Einstein-浓缩偶极暗激子(上层)和明亮的二极管(底层)的双层系统。 我们证明层间相互作用导致来自不同层的激发之间的混合。 该混合导致在明亮冷凝物的光谱中的第二光谱分支的外观。 暗双极激子的冷凝物的激发谱随后在明亮的冷凝物的发光光谱测量期间变得光学偏离,这允许人们探测其动力学性质。 这种方法与实验设置相关,其中通过常规技术检测仍然具有挑战性; 特别地,建议的方法对于在过渡金属二甲硅烷单层中研究暗双极激子是有用的。

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