论文标题
在特殊点揭示自发排放的增强
Unveiling the Enhancement of Spontaneous Emission at Exceptional Points
论文作者
论文摘要
异常的点(EPS),即复杂的光谱共振归化的非热物理学的奇异点,是具有独特特性的非平衡开放系统的最外来特征之一。例如,将EPS谐振器附近的量子发射器的排放速率提高(与自由空间排放速率相比),该因子与谐振质量因子四倍地缩放。在这里,我们通过测量与高量子饲养材料嵌入的光子晶体板的光致发光来验证EPS的自发发射理论。尽管我们的实验结果验证了理论上预测的增强,但它还突出了由于物质损失而对增强的实际局限性。我们设计的结构可用于需要增强和受控发射的应用,例如量子传感和成像。
Exceptional points (EPs), singularities of non-Hermitian physics where complex spectral resonances degenerate, are one of the most exotic features of nonequilibrium open systems with unique properties. For instance, the emission rate of quantum emitters placed near resonators with EPs is enhanced (compared to the free-space emission rate) by a factor that scales quadratically with the resonance quality factor. Here, we verify the theory of spontaneous emission at EPs by measuring photoluminescence from photonic-crystal slabs that are embedded with a high-quantum-yield active material. While our experimental results verify the theoretically predicted enhancement, it also highlights the practical limitations on the enhancement due to material loss. Our designed structures can be used in applications that require enhanced and controlled emission, such as quantum sensing and imaging.