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1)  light intensifier
增光
1.
Automotive light intensifier is an electronic product to heighten headlamp illumination.
汽车增光器是为适应车辆行驶状况而产生的一种提高汽车前照灯亮度的电子产品,本文从实践经验出发,分析其工作原理,介绍其安装方法和检修步骤。
2)  Fluorescence enhancement
荧光增强
1.
Fluorescence enhancement of HP-β-CD on anticoagulant warfarin and its application
羟丙基-β-环糊精对华法林的荧光增强作用及其分析应用
2.
A simple and sensitive fluorescence enhancement method for the determination of A(lⅢ)was reported.
基于铝(Ш)对荧光试剂四环素(TC)的荧光增强,建立了测定微量铝(Ш)的荧光分析方法。
3.
The fluorescence enhancement of glutathione was investigated by adding zinc, plumbum, copper and lanthanide metal ions.
 探讨了金属离子对还原型谷胱甘肽(GSH)-邻苯二甲醛(OPA)体系荧光信号的影响,实验结果表明Zn2+对体系的荧光信号有增强作用,而且Zn2+能够提高GSH-OPA体系的稳定性,据此建立了一种以Zn2+作为荧光增强剂,快速简便测定还原型谷胱甘肽的新方法。
3)  enhanced fluorescence
荧光增强
4)  spectral sensitization
光谱增感
1.
Results showed that intensity behavior of photoelectron currents was consistent with reflection absorption spectrum of dyes, and MDSD could quickly detect the character of dyes in spectral sensitization.
利用微波介电检测技术检测了在420~680nm范围内曝光的由2种不同染料光谱增感的AgBrI样品的光电子行为。
2.
In this paper five short wavelength cyanine dyes have been studied with the comparison of their spectral sensitizations on silver chloride emulsions by UVVis spectroscopy and other methods.
本文利用紫外 可见吸收光谱、光谱曝光等手段研究了5种短波长菁染料,比较了它们在氯化银乳剂上的光谱增感作用,得出3种较好的短波长增感染料,并研究它们在氯化银颗粒上的吸附行为。
3.
Microwave Absorption Technique(MWA)is used to study the influence of spectral sensitization on electron decay characteristics in silver halide emulsion.
本工作利用微波吸收薄膜介电谱测量技术,测量了菁染料光谱增感后的AgBr晶体乳剂在脉冲激光曝光后产生的光电子衰减时间特性,分析了不同类型的染料及其增感条件对材料光电子时间特性的影响关系。
5)  optical gain
光增益
1.
Measurement of optical gain and optical internal loss in GaN-based laser;
GaN基激光器光增益和内部光损耗的测量
2.
The longitudinal confinement factor, threshold gain, optical gain and output power were calculated.
根据理论模型计算了纵模限制因子、阈值增益、光增益、输出功率等特征参数,优化了激光器特征参数并设计了OPS VECSEL结构。
3.
Further,the optical gain spectrum of strained GaInNAs/GaAs quantum well was explained.
采用近似方法对GaInNAs材料的能带结构进行了分析,并计算了应变GaInNAs/GaAs量子阱能级,在此基础上进一步计算了应变GaInNAs/GaAs量子阱的材料光增益谱。
6)  laser-enhanced
激光增强
1.
This low temperature process allows us to fabricate new ferrite film devices on substrates with poor thermal resistance laser-enhanced ferrite plating and ultrasonic-enhanced ferrite plating improve the crystallinity of the ferrite films.
激光增强铁氧体化学镀和超声波增强铁氧体化学镀等方法可大大提高成膜质量。
补充资料:增光
1.增加光彩。
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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