Double-wavelength nanometer-precision real-time interferometer
An interferometric, dual-wavelength technology, applied in measurement devices, instruments, optical devices, etc., can solve the problems of inability to measure in real time and measurement accuracy only up to microns
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[0055] like figure 1 structure shown. The ratio ω of the sinusoidal phase modulation angular frequency between the first light source 13 and the second light source 5 by controlling the trigger controller 2 c1 / ω c2 =10. Wherein the first light source 13 and the second light source 5 adopt wavelengths respectively λ 1 = 1305.0nm and λ 2 =1308.0nm distributed feedback semiconductor laser (DFB-LD), synthesized wavelength λ e It is 568.98ìm. The photoelectric conversion element 9 is a photodiode. The antireflection element 12 is an optical fiber connector. The multiplexing element 7 is a fiber coupler. The beam splitting ratio of the fiber coupler 8 is 1:1. The reflectivity of the partially reflective element 12 is 27%. When starting the measurement, first turn on the first light source 13 and the second light source 5, and use the first temperature controller 18 and the second temperature controller 4 to stabilize the temperatures of the first light source 13 and the s...
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