Characterization of Laser Frequency Stability by Using Phase-Sensitive Optical Time-Domain Reflectometry

被引:3
作者
Bengalskii, Danil M. [1 ]
Kharasov, Danil R. [1 ]
Fomiryakov, Edgard A. [1 ,2 ]
Nikitin, Sergei P. [1 ]
Nanii, Oleg E. [1 ,2 ]
Treshchikov, Vladimir N. [1 ]
机构
[1] T8 LLC, 44-1 Krasnobogatyrskaya Str, Moscow 107076, Russia
[2] Moscow MV Lomonosov State Univ, Dept Phys, Moscow 119991, Russia
关键词
fiber optics; reflectometry; sensors; single-frequency laser; FIBER ACOUSTIC SENSORS; TEMPERATURE SENSOR; LINEWIDTH; OPERATION; STRAIN;
D O I
10.3390/photonics10111234
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
A new method to measure laser phase noise and frequency stability based on the phase-sensitive optical time-domain reflectometry is proposed. In this method, the laser under test is utilized in a phase-sensitive optical time-domain reflectometer, which employs phase-modulated dual pulses and acts as an optical frequency discriminator: laser frequency fluctuations are deduced from the analysis of the reflectometer data corresponded to phase fluctuations along the vibration-damped and thermally insulated fiber spool. The measurement results were validated by comparison with direct optical heterodyning of the tested and more coherent reference lasers. The use of dual pulses generated by an acousto-optic modulator makes it easy to adjust the time delay during measurements, which distinguishes favorably the proposed method from standard optical frequency discriminators. The method is suitable for testing highly coherent lasers and qualifying their parameters such as linear drift rate, random frequency walk rate, white frequency noise (which is directly related to laser instantaneous linewidth), and flicker noise level.
引用
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页数:13
相关论文
共 36 条
[1]   Dual-pulse phase-OTDR response to propagating longitudinal disturbance [J].
Alekseev, A. E. ;
Gorshkov, B. G. ;
Potapov, V. T. ;
Taranov, M. A. ;
Simikino, D. E. .
LASER PHYSICS, 2020, 30 (03)
[2]   Fidelity of the dual-pulse phase-OTDR response to spatially distributed external perturbation [J].
Alekseev, A. E. ;
Gorshkov, B. G. ;
Potapov, V. T. .
LASER PHYSICS, 2019, 29 (05)
[3]   A phase-sensitive optical time-domain reflectometer with dual-pulse phase modulated probe signal [J].
Alekseev, A. E. ;
Vdovenko, V. S. ;
Gorshkov, B. G. ;
Potapov, V. T. ;
Simikin, D. E. .
LASER PHYSICS, 2014, 24 (11)
[4]   Recent Progress in Distributed Fiber Optic Sensors [J].
Bao, Xiaoyi ;
Chen, Liang .
SENSORS, 2012, 12 (07) :8601-8639
[5]   Effect of strong local stretching of sensing fibre on the operation of a phase-sensitive optical time-domain reflectometer [J].
Bengalskii, D. M. ;
Kharasov, D. R. ;
Fomiryakov, E. A. ;
Nikitin, S. P. ;
Nanii, O. E. ;
Treshchikov, V. N. .
QUANTUM ELECTRONICS, 2021, 51 (02) :175-183
[6]  
Bengalskii D.M., 2022, P 2022 INT C LASER O
[7]   DETERMINATION OF THE INDIVIDUAL STRAIN-OPTIC COEFFICIENTS IN SINGLE-MODE OPTICAL FIBERS [J].
BERTHOLDS, A ;
DANDLIKER, R .
JOURNAL OF LIGHTWAVE TECHNOLOGY, 1988, 6 (01) :17-20
[8]   Performance analysis of distributed optical fiber acoustic sensors based on φ-OTDR [J].
Chen, Mengmeng ;
Masoudi, Ali ;
Brambilla, Gilberto .
OPTICS EXPRESS, 2019, 27 (07) :9684-9695
[9]   Distributed fiber-optic pressure/seismic sensor for low-cost monitoring of long perimeters [J].
Choi, KN ;
Juarez, JC ;
Taylor, HF .
UNATTENDED GROUND SENSOR TECHNOLOGIES AND APPLICATIONS V, 2003, 5090 :134-141
[10]  
Cliche J.-F., 2007, Photo-sensitivity, and Poling in Glass Waveguides, pBTuE2, DOI DOI 10.1364/BGPP.2007.BTUE2