论文标题

带有极化玻璃纤维的腔光力学

Cavity Optomechanics with Polariton Bose-Einstein Condensates

论文作者

Chafatinos, D. L., Kuznetsov, A. S., Bruchhausen, A. E., Reynoso, A. A., Biermann, K., Santos, P. V., Fainstein, A.

论文摘要

我们报告了杂化量子固态系统的实验研究,该系统包括两级人工原子,耦合到腔体封闭的光学和振动模式。在这种系统结合腔量子电动力学和空腔光学力学的系统中,量子井中的激子起着两级原子的作用,并与光场强烈耦合,从而导致混合极化状态。平面光学微腔是横向微结构的,因此可以将极性子限制在电线,3D陷阱和陷阱阵列中,从而为Polariton Energies提供了额外的调谐自由度。在增加非共振激光激发能力后,观察到北极子的玻色子凝结。具有额外弱激光探针的光学机电诱导的扩增类型清楚地识别了这些Bose-Einstein冷凝物与限制在同一腔体中的20 〜GHz呼吸样振动的耦合。随着单个连续的波激光激发,一旦激光功率超过了陷阱阵列中Bose-Einstein凝结的阈值,与声音的机械自振荡相似,与声音“ Lasing”相似。高分辨率光谱光致发光实验证明,当相邻的陷阱相对于基本20 GHz呼吸模式频率的BEC发射红色时,这些振动侧带解析线将增强。这些结果构成了连贯的腔polariton光学力学的首次演示,并为Quantum Technologies,Phonon Lasers和Phonon-Photon双向翻译器的新型混合设备铺平了道路。

We report the experimental study of a hybrid quantum solid state system comprising two-level artificial atoms coupled to cavity confined optical and vibrational modes. In this system combining cavity quantum electrodynamics and cavity optomechanics, excitons in quantum wells play the role of the two-level atoms and are strongly coupled to the optical field leading to mixed polariton states. The planar optical microcavities are laterally microstructured, so that polaritons can be confined in wires, 3D traps, and arrays of traps, providing an additional tuning degree of freedom for the polariton energies. Upon increasing the non-resonant laser excitation power, a Bose-Einstein condensation of the polaritons is observed. Optomechanical induced amplification type of experiments with an additional weak laser probe clearly identify the coupling of these Bose-Einstein condensates to 20~GHz breathing-like vibrations confined in the same cavities. With single continuous wave non-resonant laser excitation, and once the laser power overpasses the threshold for Bose-Einstein condensation in trap arrays, mechanical self-oscillation similar to phonon ``lasing'' is induced with the concomitant observation of Mollow-triplet type mechanical sidebands on the Bose-Einstein condensate emission. High-resolution spectroscopic photoluminescence experiments evidence that these vibrational side-band resolved lines are enhanced when neighboring traps are red-detuned with respect to the BEC emission at overtones of the fundamental 20 GHz breathing mode frequency. These results constitute the first demonstration of coherent cavity polariton optomechanics and pave the way towards a novel type of hybrid devices for quantum technologies, phonon lasers, and phonon-photon bidirectional translators.

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