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1)  multiple quantum well waveguide
多量子阱波导
1.
Formulas and method of calculation are presented for analysis of optical nonlinearity and bistability of TE modes in a multiple quantum well waveguide with nonlinear cladding.
给出用以分析非线性包层多量子阱波导TE模光学非线性与双稳性的理论公式与计算方法。
2)  quantum optical waveguide
量子阱光波导
3)  quantum well optical waveguide
量子势阱光波导
4)  semiconductor multiple quantum wells
半导体多量子阱
5)  Multiple Quantum wells
多量子阱
1.
Room-temperature photoluminescence of ZnO/MgO multiple quantum wells deposited by reactive magnetron sputtering;
反应磁控溅射ZnO/MgO多量子阱的光致荧光光谱分析
2.
GaAs/AlGaAs(110)multiple quantum wells(MQWs)were grown by solid source molecular beam epitaxy(MBE)with a valved arsenic cracker cell.
采用固态源分子束外延的方法在GaAs(110)取向衬底上生长了GaAs/Al GaAs多量子阱结构。
3.
The DR spectra of GaAs/Al 0 25 Ga 0 75 As multiple quantum wells (MQWs) samples were measured experimentally.
利用振动光束差分反射测试系统 ,获得了 Ga As/Al Ga As多量子阱材料的 DR谱 ,初步分析了 DR信号的产生机制 。
6)  multi-quantum well
多量子阱
1.
Analyzing the unstable reason of GaN-based blue light LED peak wavelength,it was the quantum restrictionStark effect caused by the multi-quantum well area.
分析了引起GaN基蓝光LED峰值波长不稳定的原因,它是由多量子阱区内极化效应引起的量子限制斯塔克效应造成的。
2.
To verify the direct-gap transition of a SiGe multi-quantum well and grope for its application in thermophotovoltaic cells,a high quality SiGe multi-quantum well is grown by our UHV-CVDⅡ system.
为了验证SiGe多量子阱的能带向直接带隙结构转变[1]和进一步探索其在热光电池领域的应用,采用先进的超高真空化学气相沉积系统生长出高质量的SiGe多量子阱外延层,并对其进行多次反射红外线吸收谱的测量。
3.
Based on the logarithmic relation of gain on carrier density,the rate equations are described for multi-quantum well of vertical cavity surface emitting lasers(VCSELs) taking into account the influence of nonradiative depopulation rate.
采用光增益与载流子浓度的对数关系,考虑到非辐射复合的影响,从理论上推导出多量子阱垂直腔面发射半导体激光器(VCSEL)的速率方程。
补充资料:多量子阱(见量子阱)


多量子阱(见量子阱)
multiple quantum well

多t子阱multiple quanturn well见量子阱。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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