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Experimental optimization of an erbium-doped super-fluorescent fiber source for fiber optic gyroscopes

Experimental optimization of an erbium-doped super-fluorescent fiber source for fiber optic gyroscopes
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摘要 Double-pass forward and double-pass backward erbium-doped super-fluorescent fiber sources(EDSFSs) were combined in one configuration.A 980 nm laser diode pumped the same erbium-doped fiber from both directions using a coupler as a power splitter.The double-pass configuration was achieved by coating the fiber end face.Firstly,an optimal fiber length was found to obtain a high stability of output light wavelength with pump power, and then 1530/1550 nm wavelength division multiplexing was used for spectrum planarization,which expanded the bandwidth to more than 22 nm.The final step was a test of temperature stability.The results show that the rate of the central wavelength change kept to below 3.5 ppm/℃in the range of -40 to 60℃and 1-2 ppm/℃in the range of 20-30℃.Considering all the three factors of the fiber optic gyro applications,we selected 80 mA as the pump current,in which case the central wavelength temperature instability was calculated as 2.70 ppm/℃, 3 dB bandwidth 22.85 nm,spectral flatness 0.2 dB,output power 5.17 mW and power efficiency up to 9.92%.This experimental result has a significant reference value to the selection of devices and proper design of ED-SFSs for the application of high-precision fiber optic gyroscopes. Double-pass forward and double-pass backward erbium-doped super-fluorescent fiber sources(EDSFSs) were combined in one configuration.A 980 nm laser diode pumped the same erbium-doped fiber from both directions using a coupler as a power splitter.The double-pass configuration was achieved by coating the fiber end face.Firstly,an optimal fiber length was found to obtain a high stability of output light wavelength with pump power, and then 1530/1550 nm wavelength division multiplexing was used for spectrum planarization,which expanded the bandwidth to more than 22 nm.The final step was a test of temperature stability.The results show that the rate of the central wavelength change kept to below 3.5 ppm/℃in the range of -40 to 60℃and 1-2 ppm/℃in the range of 20-30℃.Considering all the three factors of the fiber optic gyro applications,we selected 80 mA as the pump current,in which case the central wavelength temperature instability was calculated as 2.70 ppm/℃, 3 dB bandwidth 22.85 nm,spectral flatness 0.2 dB,output power 5.17 mW and power efficiency up to 9.92%.This experimental result has a significant reference value to the selection of devices and proper design of ED-SFSs for the application of high-precision fiber optic gyroscopes.
出处 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2011年第10期62-66,共5页 半导体学报(英文版)
关键词 erbium-doped super-fluorescent fiber source central wavelength stability pump from both directions spectrum planarization coating on the fiber end high-precision fiber optic gyroscope erbium-doped super-fluorescent fiber source central wavelength stability pump from both directions spectrum planarization coating on the fiber end high-precision fiber optic gyroscope
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  • 1Cutler C C,Newton S A,Shaw H J. Limitation of rotation sensing by scattering. Opt Lett, 1980,5 (9): 488 ~ 491.
  • 2Bergh R A,Culshaw B,Cutler C,et al. Source statics and the Kerr effect in fiber-optic gyroscopes. Opt Lett, 1982,7(11) :563 ~ 565.
  • 3Wyscocki P F, Digonnet M J F, Kim B Y.Wavelengthstability of a high-output, broadband, Erdoped superfluorescent fiber source pump near 980 nm.Opt Lett ,1991,16(20): 961~963.

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