FUNDAMENTAL AREAS OF PHENOMENOLOGY(INCLUDING APPLICATIONS) |
|
|
|
|
Influence of Feedback Level on Laser Polarization in Polarized Optical Feedback |
WU Yun, TAN Yi-Dong, ZHANG Shu-Lian**, LI Yan |
The State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments, Tsinghua University, Beijing 100084
|
|
Cite this article: |
WU Yun, TAN Yi-Dong, ZHANG Shu-Lian et al 2013 Chin. Phys. Lett. 30 084201 |
|
|
Abstract The influence of feedback level (or the amplitude of feedback light) on laser polarization in polarized optical feedback is investigated. A polarizer is placed in the feedback cavity to form the polarized feedback, and an attenuator is placed in the feedback cavity to tune the feedback level. The laser intensity and polarization vary dramatically at different transmissivities of the attenuator. According to the experimental phenomenon, the range of the attenuator transmissivity is divided into three zones: the flipping zone, monostable zone, and bistable zone. In the monostable zone, the laser polarization is always perpendicular to the axis of the polarizer in the feedback cavity. This may provide an effective way to choose or control laser polarization. A theoretical model based on the self-consistency of laser oscillation is presented to analyze the experimental results.
|
|
Received: 14 May 2013
Published: 21 November 2013
|
|
PACS: |
42.25.Lc
|
(Birefringence)
|
|
42.55.Lt
|
(Gas lasers including excimer and metal-vapor lasers)
|
|
42.62.Eh
|
(Metrological applications; optical frequency synthesizers for precision spectroscopy)
|
|
42.62.-b
|
(Laser applications)
|
|
|
|
|
[1] King P G R and Steward G J 1963 New Sci. 17 180 [2] Bearden A, O'Neill M, Osborne L and Wong T 1993 Opt. Lett. 18 238 [3] Alvarado T, Julius J and Caesar S 2005 Appl. Opt. 44 7287 [4] Groot P J and Gallatin G M 1989 Opt. Lett. 14 165 [5] Fei L, Zhang S L, Li Y and Zhu J 2005 Opt. Express 13 3117 [6] Stephan G and Hugon D 1985 Phys. Rev. Lett. 55 703 [7] Besnard P, Jia X L, Dalgliesh L, May A D and Stéphan D 1993 J. Opt. Soc. Am. B 10 1605 [8] Sciamanna M, Panajotov K, Thienpont H, Veretennicoff I, Megret P and Blondel M 2003 Opt. Lett. 28 1543 [9] Fei L G, Zhang S L, Wang X J 2004 Chin. Phys. Lett. 21 1944 [10] Mao W and Zhang S L 2006 Chin. Phys. 15 340 [11] Mao W, Zhang S L, Zhang L Q, Zhu J and Li Y 2006 Chin. Phys. Lett. 23 1188 [12] Tkach R W and Chraplyvy A R 1986 J. Lightwave Technol. 4 1655 [13] Wang W, Grattan K, Palmer A and Boyle W 1994 J. Lightwave Technol. 12 1577 |
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|