Laser Technology, Volume. 43, Issue 6, 841(2019)
Study on propagation characteristics of Gaussian-Schell model pulses in single-mode optical fibers
[1] [1] XU S D, XU B J. Study on propagation properties of Gaussian-Schell model beams in negative index medium[J]. Laser Technology, 2014, 38(5) : 595- 598(in Chinese).
[2] [2] ZHAO Q, HAO H Y, FAN H Y, et al. Focusing characteristics of partially coherent cosh-Gaussian beams propagating through turbulent atmosphere[J]. Laser Technology, 2016, 40(5): 750- 755(in Chinese).
[3] [3] WOLF E, COLLET E. Partically sources which produce the same far-field intensity distribution as a laser[J]. Optics Commnications, 1978,25(3):293-296.
[4] [4] WOLF E. Unified theory of coherence and polarization of random electromagnetic beams[J]. Physics Letters, 2003, A312(5): 263- 267.
[5] [5] LI Y F, YANG W L, LI D J, et al. A comparison of axial length measurements with swept-source optical coherence tomography biometry and partial coherence interferometry AL-scan[J].Chinese Journal of Optometry & Ophthalmology and Visual Science, 2018,20(11):648-652(in Chinese).
[6] [6] WANG F, YU J Y, LIU X L, et al. Research progress of partially coherent beams propagation in turbulent atmosphere[J]. Acta Physica Sinica, 2018,67(18):184203 (in Chinese).
[7] [7] ZHAO Ch L, DONG Y, WU G F, et al. Experimental demonstration of coupling of an electromagnetic Gaussian Schell-model beam into a single-mode optical fiber[J]. Applied Physics,2012, B108(4):891-895.
[8] [8] WHEELER D J,SCHMIDT J D. Coupling of Gaussian Schell-model beams into single-mode optical fibers[J]. Journal of the Optical Society of America,2011,A28(6):1224-1238.
[9] [9] SESHADRI S R. Partially coherent Gaussian Schell-model electromagnetic beams[J]. Journal of the Optical Society of America,1999, A16(6): 1373-1380.
[10] [10] LIU M Zh, VEMURI B B, DERICHE R. Unsupervised automatic white matter fiber clustering using a Gaussian mixture model [J]. Proceedings IEEE International Symposium on Biomedical Imaging, 2012(9): 522-525.
[11] [11] WANG Y, LI Y Q, LI X J, et al. Research on characteristics of super-Gaussian optical pulses without initial chirps in single-mode fibers[J]. Study on Optical Communications, 2015(1):17-19 (in Chinese).
[12] [12] JOHN Z, CURTIS R M. Validity of the additive white gaussian noise model for quasi-linear long-haul return-to-zero optical fiber communications systems[J]. Journal of Lightwave Technology, 2009,27(16):3324-3335.
[13] [13] DUAN W,YANG M L, GE Y. Study on transmission characteristics of gaussian pulse in single- mode fibers[J].Journal of Taiyuan University of Technology, 2006,37(4):476-479(in Chinese).
[14] [14] XIE Y M. Study on the propagation properties of optical Gaussian shaped pulses in optical fibers[J]. Journal of Quantum Electronics, 2004, 21(1):56-59(in Chinese).
[15] [15] WU J W, XIA G Q, WU Zh M.Transmission characteristics of super-Gaussian optical pulse in the single-mode optical fiber[J]. Laser Technology, 2003,27(4):342-348(in Chinese).
[16] [16] MANDEL L, WOLF E. Optical coherence and quantum optics[M]. Cambridge,UK: Cambridge University Press, 1995:56-60.
[17] [17] WU J, YAN G Sh. Basic coures on principles of optics[M]. Beijing: National Defense Industry Press ,2007:254-256 ,287(in Chinese).
[18] [18] WU Ch Q. Optical waveguide theory[M]. 2nd ed. Beijing: Tsinghua University Press, 2005: 100-107(in Chinese).
[19] [19] GOODMAN J W. Introduction to fourier optics[M].3th ed.Beijing:Publishing House of Electronics Industry, 2006:3-20(in Chinese).
[20] [20] CHEN Y C, WANG J H. The principle of laser[M]. Hangzhou: Zhejiang University Press,2004: 18-20(in Chinese).
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HUANG Yan. Study on propagation characteristics of Gaussian-Schell model pulses in single-mode optical fibers[J]. Laser Technology, 2019, 43(6): 841
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Received: Jan. 28, 2019
Accepted: --
Published Online: Dec. 8, 2019
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