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Laser holographic precise micropressure measuring system

机译:激光全息精密微压测量系统

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To take a large and high-grade hologram, have been numerous scientific workers' interested topics. Since the stability of the holographic plate, objective table's stability, object's stability, optical elements' stabilities, etc, aren't easily supervised and controlled precisely, the laser holographic technique has progressed at a slow pace. Precise micropressure measuring system, an application of laser technology, is introduced as a method for monitoring holographic plates' stability. This system firstly brings the pressure sensor into the laser holographic experiments, and uses the soft Kingview to design the programs for controlling the pressure sensor, so that the system can real-time monitoring and real-time adjusting the laser holographic plates' stability. Being verified by experiments, this experiment has achieved good results, for example, making a larger hologram, saving the time taken from the original 1-2 days to present of 0.5-1.5 hours, that is to say those above-mentioned measures raise the success rate of making large holograms to some extent.
机译:拍摄大型高档全息图,已经成为众多科学工作者感兴趣的话题。由于全息图板的稳定性,物镜台的稳定性,物体的稳定性,光学元件的稳定性等不易精确地监控和控制,因此激光全息技术的发展速度很慢。介绍了一种精密的微压测量系统,一种激光技术的应用,作为监测全息图板稳定性的一种方法。该系统首先将压力传感器引入激光全息实验中,并使用软组态王设计了压力传感器控制程序,从而可以实时监控和实时调整激光全息板的稳定性。经过实验验证,该实验取得了良好的效果,例如制作较大的全息图,节省了从最初的1-2天到现在的0.5-1.5小时的时间,也就是说,上述措施提高了制作大全息图的成功率在一定程度上。

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