论文标题

来自电介质纳米器阵列的单模和多模式定向激光

Single and multi-mode directional lasing from arrays of dielectric nanoresonators

论文作者

Azzam, Shaimaa I., Chaudhuri, Krishnakali, Lagutchev, Alexei, Jacob, Zubin, Kim, Young L., Shalaev, Vladimir M., Boltasseva, Alexandra, Kildishev, Alexander V.

论文摘要

介电次波长结构中的强电气和磁共振已使有效地操纵光 - 物质相互作用的独特机会。此外,由于全光和量子计算的潜在进步,连续体(BICS)中所谓的结合状态附近的非线性光 - 物质相互作用的显着增强引起了极大的关注。然而,迄今为止,在可见性策略中,高Q因子共振在介电共振中的实验实现和应用非常有限。在这项工作中,我们探讨了电介质纳米孔阵列中的电和磁偶极子的相互作用,以增强光含量的相互作用。我们报告了通过电和磁偶极子的集体衍射耦合在可见的高Q因子共振中实现的实验性实现。提供直接的物理见解,我们还表明,将阵列的瑞利异常与单个纳米孔子的电和磁偶极子耦合可以导致形成不同类型的BIC。我们利用可见的策略中的共振在室温下以高空间方向性和低阈值实现激光动作。最后,我们在实验上证明了多模式,定向激光,并研究了介电纳米孔子阵列中BIC辅助激光模式工程。我们认为,我们的结果通过实现片上可控的单个和多波长微晶体,在平面光子学中提供了新的应用。

The strong electric and magnetic resonances in dielectric subwavelength structures have enabled unique opportunities for efficient manipulation of light-matter interactions. Besides, the dramatic enhancement of nonlinear light-matter interactions near so-called bound states in the continuum (BICs) has recently attracted enormous attention due to potential advancements in all-optical and quantum computing. However, the experimental realizations and the applications of high- Q factor resonances in dielectric resonances in the visible regime have thus far been considerably limited. In this work, we explore the interplay of electric and magnetic dipoles in arrays of dielectric nanoresonators to enhance light-matter interaction. We report on the experimental realization of high-Q factor resonances in the visible through the collective diffractive coupling of electric and magnetic dipoles. Providing direct physical insights, we also show that coupling the Rayleigh anomaly of the array with the electric and magnetic dipoles of the individual nanoresonators can result in the formation of different types of BICs. We utilize the resonances in the visible regime to achieve lasing action at room temperature with high spatial directionality and low threshold. Finally, we experimentally demonstrate multi-mode, directional lasing and study the BIC-assisted lasing mode engineering in arrays of dielectric nanoresonators. We believe that our results enable a new range of applications in flat photonics through realizing on-chip controllable single and multi-wavelength micro-lasers.

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