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Effect Of Intermixing On Bulk And Interface Raman Modes In Gaas:aias Superlattice Waveguide Structures

机译:混合对Gaas:aias超晶格波导结构体和界面拉曼模的影响

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摘要

Spatially resolved Raman spectroscopy at room temperature is used to study quantum well intermixing in GaAs:AlAs superlattice structures. Phonon modes are probed from the side facet along the [110] direction. The intermixing leads to the appearance of interfacial alloy modes and degraded the intensity of the superlattice interface (IF) modes, which can be used as a sensitive indicator of superlattice quality. These changes in the Raman spectra, along with spatially resolved photoluminescence, are used to distinguish the degree of intermixing in samples intermixed by impurity free vacancy diffusion at 850-950 ℃, and to investigate the bandgap modulation in a periodically intermixed bandgap grating fabricated using ion implantation induced disordering. The shift of the GaAs-transverse optic mode to the GaAs-like transverse optic alloy mode and the degradation of the GaAs-IF mode are shown to provide the best indication of the extent of intermixing. Due to the large contrast in the GaAs-IF mode intensity between as-grown and intermixed superlattice, using IF modes is found to be a promising route for characterizing the resolution of the superlattice bandgap grating.
机译:室温下的空间分辨拉曼光谱用于研究GaAs:AlAs超晶格结构中的量子阱混合。从侧面沿[110]方向探测声子模式。混合导致界面合金模态的出现,并降低了超晶格界面(IF)模态的强度,可将其用作超晶格质量的敏感指标。拉曼光谱的这些变化以及空间分辨的光致发光用于区分在850-950℃下通过无杂质空位扩散而混合的样品中的混合程度,并研究使用离子制造的周期性混合的带隙光栅中的带隙调制。植入引起的混乱。从GaAs横向光学模式向类GaAs横向光学合金模式的转变以及GaAs-IF模式的退化可以最好地表明混合程度。由于生长后的和混合的超晶格之间的GaAs-IF模式强度存在较大的反差,因此发现使用IF模式是表征超晶格带隙光栅分辨率的有前途的途径。

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  • 来源
    《Journal of Applied Physics》 |2008年第7期|25-33|共9页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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