FOM Institute for Atomic and Molecular Physics (AMOLF), c/o Philips Research, High-Tech Campus 4, 5656 AE Eindhoven, The Netherlands.
Nano Lett. 2012 Nov 14;12(11):5481-6. doi: 10.1021/nl301907f. Epub 2012 Oct 12.
We experimentally demonstrate the directional emission of polarized light from single semiconductor nanowires. The directionality of this emission has been directly determined with Fourier microphotoluminescence measurements of vertically oriented InP nanowires. Nanowires behave as efficient optical nanoantennas, with emission characteristics that are not only given by the material but also by their geometry and dimensions. By means of finite element simulations, we show that the radiated power can be enhanced for frequencies and diameters at which leaky modes in the structure are present. These leaky modes can be associated to Mie resonances in the cylindrical structure. The radiated power can be also inhibited at other frequencies or when the coupling of the emission to the resonances is not favored. We anticipate the relevance of these results for the development of nanowire photon sources with optimized efficiency and/or controlled emission by the geometry.
我们通过实验证明了单根半导体纳米线的偏振光的定向发射。通过对垂直取向的 InP 纳米线进行傅里叶微光致发光测量,直接确定了这种发射的方向性。纳米线表现出高效的光学纳米天线,其发射特性不仅由材料决定,还由其几何形状和尺寸决定。通过有限元模拟,我们表明在结构中存在漏模的频率和直径下,可以增强辐射功率。这些漏模可以与圆柱结构中的米氏谐振相关联。在其他频率下,或者当发射与谐振的耦合不被有利时,辐射功率也可以被抑制。我们预计这些结果对于开发具有优化效率和/或通过几何形状控制发射的纳米线光子源具有重要意义。