Ma Ren-Min, Oulton Rupert F
State Key Lab for Mesoscopic Physics and School of Physics, Peking University, Beijing, China.
Collaborative Innovation Center of Quantum Matter, Beijing, China.
Nat Nanotechnol. 2019 Jan;14(1):12-22. doi: 10.1038/s41565-018-0320-y. Epub 2018 Dec 17.
Nanolasers generate coherent light at the nanoscale. In the past decade, they have attracted intense interest, because they are more compact, faster and more power-efficient than conventional lasers. Thanks to these capabilities, nanolasers are now an emergent tool for a variety of practical applications. In this Review, we explain the intrinsic merits of nanolasers and assess recent progress on their applications, particularly for optical interconnects, near-field spectroscopy and sensing, optical probing for biological systems and far-field beam synthesis through near-field eigenmode engineering. We highlight the scientific and engineering challenges that remain for forging nanolasers into powerful tools for nanoscience and nanotechnology.
纳米激光器在纳米尺度上产生相干光。在过去十年中,它们引起了广泛关注,因为它们比传统激光器更紧凑、速度更快且能效更高。由于这些特性,纳米激光器如今已成为用于各种实际应用的新兴工具。在本综述中,我们阐述了纳米激光器的内在优点,并评估了其应用的最新进展,特别是在光互连、近场光谱学与传感、生物系统的光学探测以及通过近场本征模工程进行远场光束合成方面的进展。我们强调了在将纳米激光器打造成纳米科学和纳米技术的强大工具方面仍然存在的科学和工程挑战。