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Coherent Light Sources at the Nanoscale
Annual Review of Physical Chemistry ( IF 14.7 ) Pub Date : 2017-05-02 00:00:00 , DOI: 10.1146/annurev-physchem-052516-050730
Ankun Yang 1 , Danqing Wang 2 , Weijia Wang 2 , Teri W. Odom 1, 2, 3
Affiliation  

This review focuses on coherent light sources at the nanoscale, and specifically on lasers exploiting plasmonic cavities that can beat the diffraction limit of light. Conventional lasers exhibit coherent, intense, and directional emission with cavity sizes much larger than their operating wavelength. Plasmon lasers show ultrasmall mode confinement, support strong light–matter interactions, and represent a class of devices with extremely small sizes. We discuss the differences between plasmon lasers and traditional ones, and we highlight advances in directionality and tunability through innovative cavity designs and new materials. Challenges and future prospects are also discussed.

中文翻译:


纳米级相干光源

这篇综述着重于纳米尺度上的相干光源,特别是针对利用等离子体腔的激光器,该等离子体腔可以超过光的衍射极限。常规激光器表现出相干,强和定向发射,腔尺寸远大于其工作波长。等离子激光器显示出超小模式限制,支持强光-物质相互作用,并且代表了一类尺寸非常小的设备。我们讨论了等离激元激光器与传统激光器之间的区别,并重点介绍了通过创新型腔设计和新材料在方向性和可调性方面的进步。还讨论了挑战和未来前景。

更新日期:2017-05-02
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