Acta Photonica Sinica, Volume. 34, Issue 1, 1(2005)
Theoretical Study on the Butt-coupling of Semiconductor Laser and Fiber Bragg Grating
[1] [1] Morton P A,Mizrahi V,Tanbun-Ek T,et al.Stable single mode hybrid laser with high power and narrow linewidth.Appl Phys Lett,1994,64(20):2634~2636
[2] [2] Paoletti R,Meliga M,Rossi G,et al.15 GHz modulation bandwidth, ultralow-chirp 1.55 μm directly modulated hybrid distributed Bragg reflector (HDBR) laser source.IEEE Photon Technol Lett ,1998,10(12):1691~1693
[3] [3] Bissessur H,Caraglia C,Thedrez B,et al.Wavelength-versatile external fiber grating lasers for 2.5 Gb/s WDM networks.IEEE Photon Technol Lett, 1999,11(10):1304~1306
[4] [4] Cheng W H,Chiu S F,Hong C Y,et al.Spectral characteristics for a fiber grating external cavity laser.Optical and Quantum Electronics,2000,32(3):339~348
[9] [9] Agrawal G P. Semiconductor Lasers (Second Edition).Van Nostrand Reinhold,New York,1992,Chapter 8:391~395
[10] [10] Coldren L A,Furuya K,Miller B I, et al. Etched mirror and groove-coupled GaInAsP/InP laser devices for integrated optics.IEEE Quantum Electronics, 1982,18(10):1679~1687
[11] [11] Kazarinov R F,Henry C H.The relation of linenarrowing and chirp reduction resulting from the coupling of semiconductor laser to a passive resonator. IEEE Journal Quantum Electron, 1987,QE-23(9):1401~1409
[12] [12] Presby H M,Edwards C A. Near 100% efficient fiber microlenses. Elecctronics Letters,1992,28(3): 582~584
[13] [13] Karoja P,Howe D.Diode-laser-to-waveguide butt coupling. Applied Optics,1996,35(3):404~416
[14] [14] Coldren L A,Corzine S W. Diode Laser and Photonic Integrated Circuits.John Wiley & Sons,New York,1995,Chapter 3,107~108
[15] [15] Verdiell J M,Mehrdad Z,Mathur A, et al. Fiber-Grating-Based WDM transmistters for OC-48 applications. SPIE, 1997,3038:67~77
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[in Chinese], [in Chinese]. Theoretical Study on the Butt-coupling of Semiconductor Laser and Fiber Bragg Grating[J]. Acta Photonica Sinica, 2005, 34(1): 1