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Fiber-Optic Acoustic Fourier Transducer for Audio Sound Processing

机译:用于音频声音处理的光纤声学傅里叶变换器

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We demonstrate a fiber-optic acoustic transducer operating in the audio-frequencyregime. The device is made of an array of 120 multimode optical fibers and a photorefractive novelty filter. Each fiber in the array acts as cantilevered mechanical resonator. The resonant frequencies of the fibers logarithmically sample the acoustic spectrum from approximately 100 Hz to 5 kHZ. Laser light is injected into all fibers simultaneously and is reflected from the end of each fiber. An optical novelty filter extracts the acoustic information from the reflected light. The output of the novelty filter is essentially a Fourier transform of the acoustic signal. The background intensity in the transducer output corresponds to a driving amplitude of approximately 50 angstroms. We describe holographic storage of complex sound patterns that use a LiNbO3 crystal and an acoustic transducer.

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