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1)  magnetic optical quantum wells
磁性光量子阱
2)  photonic quantum well
光量子阱
1.
Modulated photon confined states with graded-index photonic quantum well structure;
渐变折射率光量子阱对束缚态能级的调整
3)  photonic quantum-well
光量子阱
1.
The transmission properties of 1D symmetrical photonic quantum-well in the form(AB)_m(ABBA)_n(BA)_m were studied in detail,including:1.
光量子阱是将一种光子晶体插入到另一种具有不同能带结构的光子晶体中所构成。
2.
The transmission properties of 1D symmetrical photonic quantum-well in the form(AB)m(ABBA)n(BA)mare studied with transmission matrix method(TMM).
利用传输矩阵理论研究了形式为(AB)m(ABBA)n(BA)m一维对称光量子阱结构的传输特性。
4)  quantum well
光量子阱
1.
5(ωa/2πc),when the transmission band of photonic crystal(CD)n is completely inside the band gap of photonic crystal(AB)m(BA)m,both sharing the same central frequency as their symmetry centers,mirror symmetrical photonic quantum well is formed.
在光量子阱透射谱的中心频率处及对称的两侧,分布着具有规律的奇数局域共振峰,出现明显的量子化效应,透射峰数目和位置都可以通过光子晶体(CD)n的重复周期数n来调节,这一现象可用于设计可调性奇数通道滤波器。
2.
When the transmission band of photonic crystal CD is completely inside the band gap of photonic crystal(AB)m(BA)m,both sharing the same central frequency as their symmetry centers,mirror symmetrical photonic quantum well is formed.
在光量子阱透射谱的中心频率处及对称的两侧,分布着具有规律的奇数局域共振峰,出现明显的量子化效应,透过峰数目和位置都可以通过光子晶体(CD)n的重复周期数n来调节,这一现象可用于设计可调性奇数通道滤波器。
5)  single-atom magneto-optical trap
单原子磁光阱
6)  quantum well laser
量子阱激光器
1.
This paper deduces the formula of the multi—quantum well laser s optimal well numbers.
推导了量子阱激光器(也称为低阈值量子阱激光器)的最佳阱数的计算公式,经与实验值相比较,比较吻合,并且用PSpice模拟了阈值电流与腔长的关系。
2.
The cross-saturation characteristics of GaN quantum well lasers are theoretically calculated and analyzed based on the analyses of the energy band structure and the transition matrix elements of GaN.
通过分析GaN能带结构和跃迁矩阵元,对GaN基量子阱激光器的交叉饱和特性作了理论上的计算与分析。
3.
In this paper,the current modulation characteristics of a high power GaAs/GaAlAs quantum well laser in low frequencies(100Hz~20KHz)were experimentally investigaed in the first time.
本文首次对高功率GaAs/GaAlAs量子阱激光器 ( 80 8nm)的低频 ( 10 0Hz~ 2 0KHz)电流调制特性进行了实验研究。
补充资料:光量子
分子式:
CAS号:

性质: 在波粒二象性意义下的电磁能的基本粒子。

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