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Tunable single-mode lasing in a single semiconductor microrod
DOI:10.1364/OE.26.030021.png)
摘要
En 中文
Developing micro/nanoscale wire lasers with single-mode operation and lasing wavelength modulation is essential for realizing their practical applications such as optical communication and saturated spectroscopy. We demonstrated, to the best of our knowledge, the first tunable single-mode microrod laser without complicated micro/nano-manipulation and without additional environmental requirement. In this letter, we realized the wavelength modulation in a single semiconductor microrod simply and directly by changing the axial location of the active region, owing that the active region position plays a key role in determining the lasing mode of microrod lasers. Based on this feature, we proposed a pair of asymmetrical distributed Bragg reflectors (DBRs) with specific spectral selectivity to be induced in a GaN microrod to realize tunable single-mode lasing in a single semiconductor microrod. By using this method, lasing wavelength can be modulated from 369.5 to 375.7 nm flexibly and repeatedly in a 45 mu m GaN microrod with the change of the excitation source position. This approach demonstrates a big application potential in numerous fields consisting of optical telecommunication and environmental monitoring. (c) 2018 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
Keyword:
NANOWIRE LASERS
PHOTONIC CRYSTAL
WAVELENGTHS
期刊
IF:
3.3
论文数:
6.1W
被引数:
14.3W
机构
引用论文
Wavelength Tunable CdSe Nanowire Lasers Based on the Absorption-Emission-Absorption Process基于吸收-发射-吸收过程的波长可调谐CdSe纳米线激光器
ADVANCED MATERIALS
IF26.8
Tailoring the Lasing Modes in Semiconductor Nanowire Cavities Using Intrinsic Self-Absorption
NANO LETTERS
IF9.1
Widely Tunable Distributed Bragg Reflectors Integrated into Nanowire Waveguides集成到纳米线波导中的可广泛调谐的分布式布拉格反射器
NANO LETTERS
IF9.1

