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1)  Quantum confinement
量子限域
1.
Because of the effect of the three dimensional quantum confinement, semi-conductor nano-granular materials embedded in medium matrix presents optical properties which are completely different from the corresponding bulk materials, such as non-linear optical properties, visible region photoluminescence, etc.
由于三维量子限域效应的作用,半导体纳米颗粒镶嵌薄膜材料呈现出与块体材料完全不同的光学性能,如非线性光学效应、光致发光等。
2)  quantum confinement effect
量子限域
1.
Effects of Quantum Confinement Effect on the Properties of Exciton in SnO_2 Nanometer Particles;
量子限域效应对二氧化锡纳米微粒激子特性的影响
3)  Quantum confinement effect
量子限域效应
1.
The quantum confinement effect of ZnO nano-particles and the laser scattering characteristic of particles with different scale, which are irradiated with different rays, are studied.
研究了纳米ZnO的量子限域效应和不同粒径对于不同激光的散射特性 ,从实验和理论两方面验证了纳米材料的光学特性 。
2.
Both peaks were influenced by quantum confinement effect.
光致发光光谱包含两个发光峰 :一个是紫外激子发射 ,另一个是处于绿光区的杂质或缺陷发射 ,均受量子限域效应调制。
3.
Photoluminescence can be obtained from silicon based on the compound films with silicon quantum dots embedded due to quantum confinement effect.
在硅基半导体中埋置的硅量子点因量子限域效应而具有光致发光的性能,是一种实现硅基光电集成很有前途的材料。
4)  Quantum confinement
量子限域效应
5)  quantu m_confined Stark effect
量子限域斯塔克效应
6)  exciton confinement
激子限域
1.
Effects on exciton confinement and energy transfer in nano-line of low dimension polymer;
低维聚合物纳米线中的激子限域和能量传递效应研究
补充资料:限域
1.限定的区域。
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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