1. Then a detection physical model for the photocurrent spectra of the.
讨论了用于微区光电流谱的探测物理模型。

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2. The photocurrent of Copper-Cobalt alloys electrodes changes with the concentration of cobalt.
铜钴合金电极的光响应随含钴量而变化。

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3. The amplified photocurrent (about 10 times) can increase the sensitivity of the image sensor very much.
光电流放大10倍后再去积分、输出,使器件灵敏度大大提高。

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4. The calculated positions of several photocurrent peaks are in good agreement with the experimental results.
理论计算出的几个光电流峰位置与实验测量的结果符合较好。

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5. The monochromatic photocurrent of photocathode actually reflects its quantum yield under the monochromatic light.
多碱光电阴极的单色光电流实质上反映的是其在该单色光照射下的量子产额。

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6. It; was believed that the strong photocurrent peak is relevant to electron reflection at interface in superlattice.
理论分析认为,该电流峰与超晶格界面的电子反射有关。

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7. Experiment using discrete bipolar transistors has been performed to verify the effect of the photocurrent compensation method.
采用标准分立双极元件,对双极晶体管瞬态辐射光电流分流补偿法进行了实验验证。

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8. Photosensitive electrodes with different thicknesses of film had been prepared. The relation between the thickness of film and photocurrent had been studied.
制备了不同膜厚的光敏电极,研究了膜厚和光电流的关系。

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9. The amplifier input is a voltage proportional to the photocurrent signal produced by a photodiode, which is irradiated by a modulated light beam at the same chopper frequency.
放大器输入为电压信号,与光敏二极管产生的光电流信号成比例。调制光柱以断路器同样的频率照射光敏二极管。

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10. The automatic measurement system and the data processing method are discussed for microspot photocurrent spectrum and reflection spectrum of semiconductor optoelectronic devices.
叙述了为测量半导体光电器件的光电流谱和光反射谱所构成的自动测量系统及其数据处理方法。

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11. Experiments were done to probe into the characteristics of APD. The relationships between avalanche voltage, dark current, photocurrent, NEP and temperature were educed separately.
通过实验探讨了APD的温度特性,得到了APD的雪崩电压、暗电流、光电流、等效噪声功率与温度的关系。

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12. Finally, this paper analyzed and discussed the testing method of three electrodes, feature of the new LAPS and the infections of conductance of waiting testing electrolyte on photocurrent.
最后,分析讨论了三电极测量方法和新型LAPS结构特色、以及LAPS电解质电导对光电流的影响等。

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13. The initial phase difference of the fiber interferometer is calculated by measuring the interference photocurrent and the photocurrents from the two fiber arms based on a temperature control plat.
利用恒温控制平台,通过测量干涉光电流和干涉仪两臂光电流的方法,实现了对全光纤干涉仪两臂初相位差的测量。

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14. The initial phase difference of the fiber interferometer is calculated by measuring the interference photocurrent and the photocurrents from the two fiber arms based on a temperature control plat.
利用恒温控制平台,通过测量干涉光电流和干涉仪两臂光电流的方法,实现了对全光纤干涉仪两臂初相位差的测量。

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