Strain evolution and confinement effect in InAs/AlAs short-period superlattices studied by Raman spectroscopy

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作者
Yinan Zhao
Kechao Lu
Jinshan Yao
Jiqiang Ning
Baile Chen
Hong Lu
Changcheng Zheng
机构
[1] Duke Kunshan University,Division of Natural and Applied Sciences
[2] Nanjing University,National Laboratory of Solid State Microstructures, Department of Materials Science and Engineering, College of Engineering and Applied Sciences
[3] Fudan University,Department of Optical Science and Engineering, School of Information Science and Technology
[4] ShanghaiTech University,School of Information Science and Technology
[5] Nanjing University,Jiangsu Key Laboratory of Artificial Functional Materials
[6] Shanghai Engineering Research Center of Energy Efficient and Custom AI IC,undefined
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Raman spectra of two series of InAs/AlAs short-period superlattices were measured at room temperature to investigate the impact of strain on the phonon modes taking into consideration the confinement effect and interface mode. The evolution of strain in the InAs layer and the AlAs layer was studied in (InAs)2/(AlAs)2 superlattices grown at various temperatures (400–550 °C). While the strain existed in the AlAs layer remained almost constant, the strain in the InAs layer varied significantly as the growth temperature increased from 500 to 550 °C. The confinement effect on the optical phonons was analyzed based on results from (InAs)n/(AlAs)n grown at 450 °C (n = 2, 3, 4, and 5). Additionally, the confinement effect was found to be stronger in shorter periods with higher interface quality. The interface phonon modes were resolved between the longitudinal optical and transverse optical phonon modes, which assist in the rough estimation of the thickness of the layers. The disorder-activated acoustic phonon modes at the low-frequency side were also addressed.
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