论文标题

电控波导极化激光器

Electrically controlled waveguide polariton laser

论文作者

Suárez-Forero, D. G., Riminucci, F., Ardizzone, V., de Giorgi, M., Dominici, L., Todisco, F., Lerario, G., Pfeiffer, L. N., Gigli, G., Ballarini, D., Sanvitto, D.

论文摘要

激子 - 摩尔体是混合光粒子,可提供多功能的固态平台来研究多体物理效应。在这项工作中,我们基于半导体波导,以紧凑,易于制作和可集成的配置进行了电气控制的极化激光。有趣的是,我们表明可以在系统中实现极化激光,而无需全球最小值。激光发射的表面空腔模式是通过在平面波导的顶部添加专门设计的衍射光栅的夫妻来获得的,从而形成了平面内Fabry-Perrot腔。由于波导的几何形状,我们可以应用横向电场,以精细调整腔模式的激光能量和质量因子。值得注意的是,我们利用系统对应用的电场的敏感性,以实现相干偏振子的电气控制。通过操纵光栅特性和电场可以实现的确切控制,就微型化和集成性提供了强大的优势,这是偏光技术未来开发相干来源的两个主要特征。

Exciton-polaritons are mixed light-matter particles offering a versatile solid state platform to study many-body physical effects. In this work we demonstrate an electrically controlled polariton laser, in a compact, easy-to-fabricate and integrable configuration, based on a semiconductor waveguide. Interestingly, we show that polariton lasing can be achieved in a system without a global minimum in the polariton energy-momentum dispersion. The surface cavity modes for the laser emission are obtained by adding couples of specifically designed diffraction gratings on top of the planar waveguide, forming an in-plane Fabry-Perot cavity. It is thanks to the waveguide geometry, that we can apply a transverse electric field in order to finely tune the laser energy and quality factor of the cavity modes. Remarkably, we exploit the system sensitivity to the applied electric field to achieve an electrically controlled population of coherent polaritons. The precise control that can be reached with the manipulation of the grating properties and of the electric field provides strong advantages to this device in terms of miniaturization and integrability, two main features for the future development of coherent sources from polaritonic technologies.

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