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Improvement of characteristics of an InGaN light-emitting diode by using a staggered AlGaN electron-blocking layer 下载免费PDF全文
The optical and physical properties of an InGaN light-emitting diode (LED) with a specific design of a staggered AlGaN electron-blocking layer (EBL) are investigated numerically in detail. The electrostatic field distribution, energy band, carrier concentration, electroluminescence (EL) intensity, internal quantum efficiency (IQE), and the output power are simulated. The results reveal that this specific design has a remarkable improvement in optical performance compared with the design of a conventional LED. The lower electron leakage current, higher hole injection efficiency, and consequently mitigated efficiency droop are achieved. The significant decrease of electrostatic field at the interface between the last barrier and the EBL of the LED could be one of the main reasons for these improvements. 相似文献
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采用基于密度泛函理论(DFT)的总体能量平面波超软赝势法,对Mg,Zn,Cd掺杂InN的32原子超原胞体系进行了几何结构优化,从理论上给出了掺杂和非掺杂体系的晶体结构参数,其中非掺杂体系的理论值与实验值符合很好. 计算了掺杂InN晶体的结合能,总体态密度、集居数,差分电荷密度,并对此做了细致的分析. 计算结果表明,相对于Zn和Cd,MgIn在InN中的溶解度会更大,并能提供更多的空穴态,非常有利于InN的p型掺杂.
关键词:
氮化铟
p型掺杂
电子结构
第一性原理 相似文献
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采用常压金属有机化学汽相沉积(MOCVD)技术以Al2O3为衬底在GaN膜上生长了InxGa1-xN薄膜。以卢瑟福背散射/沟道技术、光透射谱、光致发光光谱对InxGa1-xN/GaN/AI2O3样品进行了测试。研究了InxGa1-xN薄膜的弯曲因子及斯托克斯移动。结果表明,采用光透射谱、光致发光光谱得到的InxGa1-xN薄膜的禁带宽度一致,InxGa1-xN薄膜并不存在斯托克斯移动。InxGa1-xN薄膜的In组分分别为0.04,0.06,0.24,0.26时,其弯曲因子分别为3.40,2.36,1.82,3.70。随In组分变化。InxGa1-xN薄膜的弯曲因子的变化并没有一定的规律,表明InxGa1-xN薄膜的禁带宽度随In组分的变化关系复杂。 相似文献
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The energy band properties, density of states, and band alignment of the BexZn1-xO1-ySy alloy (Be- and S-doped wurtzite ZnO) are investigated by the first-principles method. BexZn1-xO1-ySy alloy is a direct band gap semiconductor, the valence band maximum (VBM) and the conduction band minimum (CBM) of BexZn1-xO1-ySy are dominated by S 3p and Zn 4s states, respectively. The band gap and lattice constant of BexZn1-xO1-ySy alloy can be modulated by changing the doped content values x and y. With the increase in Be content value x in the BexZnl-xOl-ySy alloy, the band gap increases and the lattice constant reduces, but the situation is just the opposite when increasing the S content value y in the BexZn1-xO1-ySy alloy. Because the lattice constant of Be0.375Zn0.625O0.75S0.25 alloy is well matched with that of ZnO and its energy gap is large compared with that of ZnO, so the Be0.375Zn0.625O0.75S0.25 alloy is suitable for serving as the blocking material for a high-quality ZnO-based device. 相似文献
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Performance enhancement of an InGaN light-emitting diode with an AIGaN/InGaN superlattice electron-blocking layer 下载免费PDF全文
The efficiency enhancement of an InGaN light-emitting diode (LED) with an A1GaN/InGaN superlattice (SL) electron-blocking layer (EBL) is studied numerically, which involves the light-current performance curve, internal quan- tum efficiency electrostatic field band wavefunction, energy band diagram carrier concentration, electron current density, and radiative recombination rate. The simulation results indicate that the LED with an A1GaN/InGaN SL EBL has better optical performance than the LED with a conventional rectangular A1GaN EBL or a normal A1GaN/GaN SL EBL because of the appropriately modified energy band diagram, which is favorable ibr the injection of holes and confinement of elec- trons. Additionally, the efficiency droop of the LED with an AIGaN/InGaN SL EBL is markedly improved by reducing the polarization field in the active region. 相似文献
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利用传输矩阵方法对纤锌矿型量子级联激光器有源区的界面与受限声子进行了研究.计算结果显示:在纵光学频域有一组界面声子与二组受限声子存在,而且最低频率的两个界面声子在一定条件下能转变为受限模式.通过比较界面声子与受限声子的色散及声子势发现两者有很大不同,且计算电声散射速率可以发现由这两种声子引起的散射率是可比拟的. 相似文献