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Experimental investigation on a microphone using the change in the total reflection of light by sound

机译:利用声音的光的全反射变化对麦克风进行实验研究

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摘要

A new microphone, which uses the optical total reflection at the boundary surface between glass and air, is investigated theoretically and experimentally. The critical angle for total reflection changes by the refractive index of air, which depends on the air density. The density changes by the sound pressure. Therefore, the sound pressure is measurable by detecting the intensity of the reflected light from the total reflection area, and it is expected that there is no limitation in the frequency range as the mechanical vibration is not used. The sound pressure sensitivity of the microphone and the effect of surrounding conditions are investigated theoretically. Some experiments are carried out to verify the theoretical investigations, employing a laser diode and a sensor made by cutting off a part of cylindrical glass rod. Experimental results show that the microphone can be used for the measurement of the waveform of high frequency sound though the sensitivity of the microphone is low as expected by the theoretical investigation. The remaining problem is to improve the sensitivity.
机译:在理论上和实验上研究了一种新的麦克风,该麦克风在玻璃和空气之间的界面上利用光学全反射。全反射的临界角随空气的折射率而变化,这取决于空气的密度。密度随声压而变化。因此,可以通过检测来自全反射区域的反射光的强度来测量声压,并且由于不使用机械振动,因此期望在频率范围上没有限制。理论上研究了麦克风的声压灵敏度和周围环境的影响。进行了一些实验以验证理论研究,采用激光二极管和通过切下一部分圆柱形玻璃棒制成的传感器。实验结果表明,尽管麦克风的灵敏度如理论研究所预期的那样低,但麦克风仍可用于测量高频声音的波形。剩下的问题是提高灵敏度。

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