The main factors that cause the quantum bit error rate are the optical elements, the detector dark noise and the space optical environment and these factors were analyzed.
对于自由空间量子信道,引起量子误码率的主要因素是光学元件、探测器暗噪声和空间光学环境,并对这些因素进行了分析。
investigative summarization of correlated photons and application in absolute quantum efficiency calibration of detector
相关光子方法绝对定标光电探测器量子效率应用研究综述
nano-silicon structure has many optoelectronic characteristics differ from bulk silicon due to its quantum confinement effect. it show extensive application prospect in light-emitting device, light-detector, optoelectronic integrated device, and sensor.
硅纳米结构由于量子限制效应有许多不同于体硅的光学及光电性能,它在发光器件、光探测器件、光电集成器件以及传感器等领域有广阔的应用前景。
Closely related to the quantum information processing in solid states, we study the quantum measurement of single electron state by a mesoscopic charge-sensitive detector, namely the quantum point contact ( QPC).
研究了用介观量子点接触(QPC)对单电子两态和多态系统的量子测量问题。
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