We develop a new method to read the frequency modulation (FM) of a laser diode (LD) self-mixing interferometer (SMI), based on using a Mach-Zehnder interferometer as an edge filter, and obtain improved performance respect to the normally used amplitude modulation (AM) signal. The converted FM signal is much larger and has a better SNR than the normally used AM signal. The minimum detectable signal of the SMI is improved by a factor 150 with our setup that uses an all-fiber technology to realize the compact Mach-Zehnder filter (MZF). The MZF has a record 19 (GHz)-1 conversion factor and is tuned at half-fringe on the laser wavelength with a feedback loop acting on the laser bias current. On small amplitude vibrations measured with the converted-FM signal, we attain a displacement (NED) of 1.3-pm/√ Hz, about two order of magnitude better than the AM channel or a normal SMI.

Exploiting the FM-signal in a laser-diode SMI by means of a Mach-Zehnder filter

NORGIA, MICHELE;MELCHIONNI, DARIO;
2017-01-01

Abstract

We develop a new method to read the frequency modulation (FM) of a laser diode (LD) self-mixing interferometer (SMI), based on using a Mach-Zehnder interferometer as an edge filter, and obtain improved performance respect to the normally used amplitude modulation (AM) signal. The converted FM signal is much larger and has a better SNR than the normally used AM signal. The minimum detectable signal of the SMI is improved by a factor 150 with our setup that uses an all-fiber technology to realize the compact Mach-Zehnder filter (MZF). The MZF has a record 19 (GHz)-1 conversion factor and is tuned at half-fringe on the laser wavelength with a feedback loop acting on the laser bias current. On small amplitude vibrations measured with the converted-FM signal, we attain a displacement (NED) of 1.3-pm/√ Hz, about two order of magnitude better than the AM channel or a normal SMI.
2017
Diode lasers; Frequency modulation; Interferometry; Laser Sensors; Measurement by laser beam; Optical fiber amplifiers; Optical filters; Optical Instruments; Optical interferometry; Semiconductor lasers; Electronic, Optical and Magnetic Materials; Atomic and Molecular Physics, and Optics; Electrical and Electronic Engineering
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1032546
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