Nanowire Lasers

被引:73
作者
Couteau, C. [1 ,2 ,3 ]
Larrue, A. [1 ,4 ]
Wilhelm, C. [1 ]
Soci, C. [1 ,5 ]
机构
[1] Nanyang Technol Univ, CINTRA CNRS NTU Thales, UMI 3288, Singapore 639798, Singapore
[2] Nanyang Technol Univ, CDPT, UMI 3288, Singapore 639798, Singapore
[3] Univ Technol Troyes, Lab Nanotechnol Instrumentat & Opt, Charles Delaunay Inst, CNRS UMR 6281, Troyes, France
[4] TRT, Lab 3 5, Palaiseau, France
[5] Nanyang Technol Univ, CDPT, Singapore 639798, Singapore
关键词
SINGLE ZNO NANOWIRE; PHOTONIC CRYSTAL; SEMICONDUCTOR NANOWIRES; MONOLITHIC INTEGRATION; STIMULATED-EMISSION; QUANTUM EFFICIENCY; CAVITY; GAIN; INP; MICROCAVITY;
D O I
10.1515/nanoph-2015-0005
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
We review principles and trends in the use of semiconductor nanowires as gain media for stimulated emission and lasing. Semiconductor nanowires have recently been widely studied for use in integrated optoelectronic devices, such as light-emitting diodes (LEDs), solar cells, and transistors. Intensive research has also been conducted in the use of nanowires for subwavelength laser systems that take advantage of their quasi-one-dimensional (1D) nature, flexibility in material choice and combination, and intrinsic optoelectronic properties. First, we provide an overview on using quasi-1D nanowire systems to realize subwavelength lasers with efficient, directional, and low-threshold emission. We then describe the state of the art for nanowire lasers in terms of materials, geometry, and wavelength tunability. Next, we present the basics of lasing in semiconductor nanowires, define the key parameters for stimulated emission, and introduce the properties of nanowires. We then review advanced nanowire laser designs from the literature. Finally, we present interesting perspectives for low-threshold nanoscale light sources and optical interconnects. We intend to illustrate the potential of nanolasers in many applications, such as nanophotonic devices that integrate electronics and photonics for next-generation optoelectronic devices. For instance, these building blocks for nanoscale photonics can be used for data storage and biomedical applications when coupled to on-chip characterization tools. These nanoscale monochromatic laser light sources promise breakthroughs in nanophotonics, as they can operate at room temperature, can potentially be electrically driven, and can yield a better understanding of intrinsic nanomaterial properties and surface-state effects in low-dimensional semiconductor systems.
引用
收藏
页码:90 / 107
页数:18
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