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1)  resonant-cavity-enhanced waveguide
波导共振增强型
2)  resonant enhancement
共振增强
1.
The optical properties of two derivatives were discussed using the theories of π-electron conjugated structure and resonant/non-resonant enhancement,respectively.
采用吸收光谱、荧光光谱和皮秒Z-扫描等实验方法研究了侧链长度的不同对聚[2-甲氧基-5-(2′-乙基-己氧基)]对苯乙炔(MEH-PPV)和聚(2,5-二辛氧基)对苯乙炔(DO-PPV)两种聚对苯乙炔(PPV)衍生物光学性质的影响,并用π-电子共轭结构理论和共振、非共振增强理论进行了分析。
2.
The optical properties of the three compounds were discussed on the basis of π-electron conjugated structures and resonant/non-resonant enhancement.
主要采用吸收光谱、荧光光谱和皮秒Z-扫描等实验方法研究了三种不同取代基的卟啉化合物5,10,15,20-四对羟基苯基卟啉[T(4-HP)P]、5,10,15,20-四对酯基苯基卟啉[T(4-EP)P]和5,10,15,20-四对溴苯基卟啉[T(4-BrP)P]的光学及非线性光学性质,并从离域电子共轭结构理论和共振、非共振增强理论进行了分析。
3)  Resonance enhancement
共振增强
1.
Theoretical investigation on dispersion effect and two-photon resonance enhancement of molecular first hyperpolarizability;
有机分子第一超极化率色散效应和双光子共振增强理论研究
2.
Resonance enhancement appears as the 2s and 3p states are both bound in outer well, and a resonance enhancement peak has been found at the “collapse point”.
2s,3p态都被限制在外阱时出现共振增强,在坍塌点发现共振增强峰。
4)  guided wave resonance
导波共振
1.
In this paper, we examine theoretically the GH shift under the conditions of guided wave resonance and surface plasmon resonance by using the stationary phase method a.
研究Goos-H?nchen位移有多种方法,本文采用Artmann发展的静态位相(stationary phase)方法和高斯光束下的数值计算方法,主要研究了导波共振和表面等离子波共振时GH位移增强效应。
5)  waveguide resonance
波导共振
1.
Combining with the amplitude distributions,the optical wave forms a waveguide resonance between two slits,the resonance at the front surface couples the incident energy into the slit,but the resonance at the back surface will couple the energy away from the metal layer.
结合振幅分布,认为光波在两狭缝形成波导共振,前表面狭缝的共振将入射波能量耦合进入狭缝中,后表面狭缝的共振将能量耦合出去,两个狭缝之间通过隧穿效应耦合。
6)  resonant cavity enhanced photoketector
共振腔增强型探测器
补充资料:波导通信(见毫米波通信)


波导通信(见毫米波通信)
wave guide communication

  bodao tongxin波导通信(wave guide communieation)见毫米波通信。
  
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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