photoconduction
- n.光电导(率,性)
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The photoconduction response under strong electric field is discussed .
本篇只讨论强电场下的光电导响应。
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The abnormal photoconduction response of α - si : h films with sandwich structure
在夹心结构α-Si:H膜中的反常光电导响应
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THE DYNAMICS IN PHOTOCONDUCTION RESPONSE OF AMORPHOUS SILICON (ⅰ) The Photoconduction Response under Strong Electric Field
非晶硅光电导响应的动力学研究(Ⅰ)&强电场下的光电导响应
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I - V curve of GaAs photoconduction detector irradiated by double beams of proton
双束质子辐照砷化镓光电导探测器的I-V特性
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Experimental result demonstrated that the light effect is originated by the stable state photoconduction produced on the surface of the silicon chip .
结果表明光照影响是由硅片表面产生的定态光电导引起的。
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Influence of a Trap on Photoconduction
光电导过程中陷阱的影响
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The exponential gain , the diffractive efficiency , the response time , photoconduction and signal to noise ratio or the crystals were measured .
测试晶体的指数增益系数、衍射效率、响应时间、光电导和信噪比。
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The photo scattering resistance ability , diffraction efficiency , response time and photoconduction of Mg : Fe ∶ LiNbO 3 were measured .
测试了Mg∶Fe∶LiNbO3晶体抗光致散射能力、衍射效率、响应时间和光电导。
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Nano-crystalline silicon material have not only a good photosensitive properties but also a high ratio of photo / dark conductance . Compared with amorphous silicon , the photoconduction of nc-Si : H has a less attenuation under long-time illumination .
纳米硅薄膜材料不仅光敏性好,光暗电导比高,而且跟非晶硅相比,其光电导在长时间光照下的衰减要小得多。
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The article describes research results and applications of purification and cleanliness test of liquids , preparation and mounting of printed circuit boards , photoconduction test , gyro manufacturing process and test , etc. at the Soviet Research Institute of Avia - tion Instrument Technology .
本文介绍了苏联航空仪表工艺院在液体净化技术及清洁度检测、印制板制备及装备技术、光导检测技术以及陀螺制造工艺、检测等方面研究成果与应用情况。
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Compared with the efficiency of polystyrene plastic scintillator , the relative luminous emission efficiency increases by 15 % . Dual functions can also be achieved with high emission efficiency by benefiting from the photoconduction of the semiconductor nanocrystal and the electroluminescence of the polymer .
据测定,这种闪烁体比聚乙烯的相对发光效率高15%。同时,利用无机纳米半导体的光导特性,这种复合体系也可以制成光导与电致发光双功能器件,且其发光效率可有较大幅度提高。