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Theoretical investigation on the sensitivity of 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来对麦克风的灵敏度进行理论研究

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摘要

A new microphone, which uses the optical total reflection on the boundary surface between glass and air, has been proposed. The intensity of reflected light changes by the sound pressure, as the fluctuation of air density due to sound changes the refractive index of air and the change in the refractive index changes the angle of total reflection. The sound pressure can be measured as the change in the intensity of reflected light In this paper we investigate theoretically the sound pressure sensitivity of the proposed microphone in certain types of the shape of curved boundary surface. As the sensitivity can be improved considerably by employing a plane wave light source, such as laser light, and the curved surface with a large radius of curvature, the microphone is expected to be practically used The microphone detects the sound pressure without mechanical vibration and can be made small, so its upper limit in the frequency range is very high in principle.
机译:已经提出了一种新的麦克风,其在玻璃和空气之间的边界表面上使用光学全反射。反射光的强度随着声压而变化,这是由于声音引起的空气密度的波动会改变空气的折射率,而折射率的变化会改变全反射的角度。可以通过反射光强度的变化来测量声压。在本文中,我们从理论上研究了在某些类型的弯曲边界面形状中所提出的麦克风的声压灵敏度。由于通过使用诸如激光之类的平面波光源以及曲率半径较大的曲面可以大大提高灵敏度,因此有望实际使用麦克风。该麦克风能够在没有机械振动的情况下检测声压,并且可以由于将其减小,因此其在频率范围内的上限原则上非常高。

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