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Lock-in holography using optically-addressed multiple quantum well spatial light modulators

机译:使用光学寻址多量子阱空间光调制器的锁定全息术

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Summary form only given. Perpendicular field multiple quantum well optically addressed spatial light modulators (MQW OASLMs) have been shown to exhibit high speed, resolution and sensitivity to light. They have been applied to optical correlation and non-destructive evaluation (NDE) of materials. One drawback of these devices is that their response saturates at high writing intensities. This saturation intensity is a function of the device's material parameters and the cycle time of the ac voltage that is applied to them. It is possible to overcome this problem by using the ability of perpendicular field MQW OASLMs to perform rapid image subtraction. Under the proper conditions, the image retained in an MQW OASLM after one complete voltage cycle is the difference of the image on the writing beams on the positive and negative cycles of the voltage. By synchronizing the coherent writing beams with the applied voltage so that they are on only during the positive (or negative) part of the cycle it is possible, over many cycles, to build up a strong hologram even when an incoherent (but not temporally modulated) background field much stronger than the writing beam is present. We performed this experiment using a reflective mode PIN GaAs/AlGaAs MQW OASLM.
机译:仅提供摘要表格。垂直场多量子阱光学寻址空间光调制器(MQW OASLM)已显示出对光的高速度,分辨率和灵敏度。它们已应用于材料的光学相关性和无损评估(NDE)。这些设备的一个缺点是它们的响应在高写入强度下会饱和。该饱和强度是设备的材料参数和施加到它们的交流电压的循环时间的函数。通过使用垂直场MQW OASLM执行快速图像减法的能力,可以克服此问题。在适当的条件下,在一个完整的电压周期后保留在MQW OASLM中的图像是在电压的正周期和负周期上写入光束上的图像之差。通过使相干写入光束与施加的电压同步,以使它们仅在周期的正(或负)部分期间导通,即使在不相干(但未进行时间调制)的情况下,也可能在许多周期内建立强大的全息图)背景场比存在的写入光束要强得多。我们使用反射模式PIN GaAs / AlGaAs MQW OASLM进行了此实验。

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