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Near-field Optical Characterization of Visible Multiple Quantum Well Semiconductor Lasers

机译:可见多量子阱半导体激光器的近场光学表征

摘要

[[abstract]]Both collection and excitation modes of scanning near-field optical microscopy (SNOM) were used to study a low power visible multiquantum-well laser diode (LD). Collection mode SNOM provides the near-field optical propagating intensity distribution at the facet of LD. Excitation mode SNOM gives local photoconductivity information of the structure of LD facet. Results show highly localized spatial correlation of LD structure and its optical performance at the facet. Different sizes of apertures were used in both modes, and results of near-field interactions can be quite different. Results show obvious difference of photocurrent distribution caused by the different sizes of apertures in excitation mode. Two wavelengths of 543.5 nm and 632.8 nm were used in excitation mode SNOM. It can be deduced from the two pump photon energies that there exists defect level in the energy range of 60 - 380 meV below the conduction band edge in the n-(Al0.7Ga0.3)0.5In0.5P cladding layer. In addition to the highly localized images of topography, optical output, and optical beam induced current at the facet of LD, local near- field optical spectroscopy was performed as well. Spatially resolved near-field optical spectra of both stimulated and spontaneous emissions were obtained at the facet of LD. Longitudinal modes of stimulated emission of LD were observed locally.
机译:[[摘要]]扫描近场光学显微镜(SNOM)的收集和激发模式均用于研究低功率可见光多量子阱激光二极管(LD)。收集模式SNOM提供了LD面上的近场光学传播强度分布。激发模式SNOM给出LD小平面结构的局部光电导信息。结果显示LD结构的高度局部空间相关性及其在小平面上的光学性能。在两种模式下都使用了不同大小的光圈,并且近场相互作用的结果可能大不相同。结果表明,在激发模式下,不同孔径的光孔引起的光电流分布存在明显差异。在激发模式SNOM中使用了543.5 nm和632.8 nm这两个波长。从两个泵浦光子能量可以推论出,在n-(Al0.7Ga0.3)0.5In0.5P包层的导带边缘以下,在60-380 meV的能量范围内存在缺陷能级。除了高度局部化的地形图,光学输出和LD面上的光束感应电流外,还执行了局部近场光谱学。在LD面上获得了受激发射和自发发射的空间分辨近场光谱。在局部观察到LD的受激发射的纵向模式。

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  • 作者

    Lu Nien H.;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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