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排序方式: 共有142条查询结果,搜索用时 15 毫秒
21.
对分布布拉格反射镜(DBR)的原理和特征进行了分析,使用传输矩阵方法计算了不同对数GaAs/AlAs反射镜的反射率曲线.利用分子束外延(MBE)设备生长了波长为920nm和980nm的半导体多层膜DBR反射镜,分析了实验测得的反射谱与理论拟合曲线之间的差异及其产生原因,实现了材料的优化生长,获得了反射率大于99;、中心波长和带宽接近理论计算值的DBR材料.该DBR的反射谱拟合与优化生长研究可应用于VCSEL和VECSEL激光器. 相似文献
22.
研究了金属有机物化学气相沉积法制备的不同厚度InN薄膜的位错特性与光电性质.基于马赛克微晶模型,通过X射线衍射非对称面摇摆曲线测量,拟合出样品刃型位错密度分别为4.2×1010cm-2和6.3×1010cm-2,并发现样品的微晶扭转角与位错密度随薄膜厚度增加而减小.通过室温霍尔效应测量得到样品载流子浓度分别为9×1018cm-3和1.2×1018cm关键词:
氮化铟
位错
载流子起源
局域态 相似文献
23.
Temperature Insensitivity of Optical Properties of InAs/GaAs Quantum Dots due to a Pregrown InGaAs Quantum Well 下载免费PDF全文
Both the peak position and linewidth in the photoluminescence spectrum of the InAs/GaAs quantum dots usually vary in an anomalous way with increasing temperature. Such anomalous optical behaviour is eliminated by inserting an In0.2Ga0.8As quantum well below the quantum dot layer in molecular beam epitaxy. The insensitivity of the photoluminescence spectra to temperature is explained in terms of the effective carrier redistribution between quantum dots through the In0.2Ga0.8As quantum well. 相似文献
24.
By the method of finite difference, the anisotropic spin splitting of the AlxGa1-xAs/GaAs/Aly Ga1-yAs/AlxGal-xAs step quantum wells (QWs) are theoretically investigated considering the interplay of the bulk inversion asymmetry and structure inversion asymmetry induced by step quantum well structure and external electric field. We demonstrate that the anisotropy of the total spin splitting can be controlled by the shape of the QWs and the external electric field. The interface related Rashba effect plays an important effect on the anisotropic spin splitting by influencing the magnitude of the spin splitting and the direction of electron spin. The Rashba spin splitting presents in the step quantum wells due to the interface related Rashba effect even without external electric field or magnetic field. 相似文献
25.
Flow Field and Temperature Field in GaN-MOCVD Reactor Based on Computational Fluid Dynamics Modeling 下载免费PDF全文
Metal organic chemical vapor deposition(MOCVD) growth systems are one of the main types of equipment used for growing single crystal materials, such as GaN. To obtain film epitaxial materials with uniform performance,the flow field and temperature field in a GaN-MOCVD reactor are investigated by modeling and simulating. To make the simulation results more consistent with the actual situation, the gases in the reactor are considered to be compressible, making it possible to investigate the distributions of gas density and pressure in the reactor.The computational fluid dynamics method is used to study the effects of inlet gas flow velocity, pressure in the reactor, rotational speed of graphite susceptor, and gases used in the growth, which has great guiding significance for the growth of GaN film materials. 相似文献
26.
Effects of interface roughness on photoluminescence full width at half maximum in GaN/AlGaN quantum wells 下载免费PDF全文
Low temperature photoluminescence(PL) measurements have been performed for a set of GaN/AlxGa1-xN quantum wells(QWs). The experimental results show that the optical full width at half maximum(FWHM) increases relatively rapidly with increasing Al composition in the AlxGa1-xN barrier, and increases only slightly with increasing GaN well width. A model considering the interface roughness is used to interpret the experimental results. In the model, the FWHM’s broadening caused by the interface roughness is calculated based on the triangle potential well approximation. We find that the calculated results accord with the experimental results well. 相似文献
27.
Design and Fabrication of Six-Channel Complex-Coupled DFB Quantum Cascade Laser Arrays Based on a Sampled Grating 下载免费PDF全文
We designed and fabricated a six-channel complex-coupled distributed feedback (DFB) quantum cascade laser arrays based on a sampled Bragg grating. The six-channel DFB laser arrays exhibit a linear tuning range of 74nm centered at a wavelength of 7.55μm at room temperature. Robust single-mode emission with a side mode suppression ratio about 20 dB was observed, even at full power. The used sampled grating and reflectivity coating on the back facet lead to the peak output power varying from 55 to 82 m W with a small difference in slope efficiency from 100 to 128mW/A. 相似文献
28.
通过MOVPE方法生长了不同Al组分的3块AlxGa1-xN样品,利用稳态光谱和时间分辨光谱对其样品的光学特性进行了分析。鉴于影响氮化物发光性质的极化电场或局域态的单一机制不能充分解释我们的实验现象,提出了局域态-内部极化电场竞争的机制。通过对实验数据的分析,得出如下重要结论:样品PL峰位蓝移的温度起点基本对应于局域态和极化电场起作用的交替点,PL峰位发生蓝移的温度起点与光强-温度曲线的斜率出现明显变化的温度点一致;随着温度的升高,若AlGaN合金样品中PL峰位存在二次蓝移,则说明样品中电场分布不均匀。 相似文献
29.
发光二极管可广泛应用于计算机、电视以及公共场所大型平板显示器等领域 .其所用的发光材料包括无机材料、有机小分子材料和高分子材料等几类 .作为发光材料要具有高的发光效率,良好的稳定性,以及为了实现全色显示其发光波长要能调节 .发光波长的调节,一般是通过能带的变化来实现 .通常使能带变化的方法有掺杂、改变共轭长度(有机材料) [1- 4]、和改变颗粒大小(半导体纳米材料) [5, 6]等 .我们在进行无机半导体纳米材料与有机分子材料的组装复合时发现有机发光分子在无机颗粒表面的有序排列也能使发光波长显著变化,这可望成为调… 相似文献
30.
在不同的生长温度和载气的条件下,采用低压金属有机物气相外延方法生长了系列的InAlGaN薄膜,通过能量色散谱(EDS),高分辨X射线衍射(HRXRD)和光致发光谱(PL)对样品进行表征与分析,研究了生长工艺对InAlGaN外延层结构和光学性能的影响.发现当以氮气做载气时,样品的发光很弱并且在550nm附近存在一个很宽的深能级发光峰;当采用氮气和氢气的混合气做载气时,样品中的深能级发光峰消失且发光强度明显提高.以混合气做载气,InAlGaN薄膜中铟的组分随生长温度的升高而降低,而薄膜的结构和光学性能却提高.结合PL和HRXRD的测试结果得到了较佳的生长参数:即载气为氢气和氮气的混合气以及生长温度在850℃到870℃. 相似文献