论文标题

激子 - 果龙在原子上薄晶体中的骨凝结

Bosonic condensation of exciton-polaritons in an atomically thin crystal

论文作者

Anton-Solanas, Carlos, Waldherr, Maximilian, Klaas, Martin, Suchomel, Holger, Cai, Hui, Sedov, Evgeny, Kavokin, Alexey V., Tongay, Sefaattin, Watanabe, Kenji, Taniguchi, Takashi, Höfling, Sven, Schneider, Christian

论文摘要

二维晶体的出现彻底改变了现代固态物理。从基本的角度来看,增强电荷载体相关性的增强引发了运输和量子光学界的巨大研究活动。在这方面,最吸引人的效果之一是许多粒子复合物的骨凝结和自发连贯性。在这里,我们发现了令人信服的证据表明,来自光学泵送在介电微腔中嵌入的Mose2的原子薄晶体中出现的激子 - 孔子的骨气凝结。冷凝物的形成以类似阈值的方式突然地增加了发光强度,并且在外部施加的磁场中具有明显的自旋可极化性。空间相干性通过高度分辨的真实空间干涉法映射,揭示了空间扩展的冷凝物。我们的设备代表了基于原子薄晶体以及非线性的valleytronic相干设备实现相干光源的决定性步骤。

The emergence of two-dimensional crystals has revolutionized modern solid-state physics. From a fundamental point of view, the enhancement of charge carrier correlations has sparked enormous research activities in the transport- and quantum optics communities. One of the most intriguing effects, in this regard, is the bosonic condensation and spontaneous coherence of many-particle complexes. Here, we find compelling evidence of bosonic condensation of exciton-polaritons emerging from an atomically thin crystal of MoSe2 embedded in a dielectric microcavity under optical pumping. The formation of the condensate manifests itself in a sudden increase of luminescence intensity in a threshold-like manner, and a significant spin-polarizability in an externally applied magnetic field. Spatial coherence is mapped out via highly resolved real-space interferometry, revealing a spatially extended condensate. Our device represents a decisive step towards the implementation of coherent light-sources based on atomically thin crystals, as well as non-linear, valleytronic coherent devices.

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