Dissertation > Excellent graduate degree dissertation topics show

Theoretical and Experimental Research of Erbium-doped Fiber Laser

Author: TianPengFei
Tutor: YanFengPing
School: Beijing Jiaotong University
Course: Electromagnetic Field and Microwave Technology
Keywords: Er-Doped Fiber Laser Single Longitudinal Mode Narrow linewidth FBG F-P Etalon FBG Sagnac Ring
CLC: TN248
Type: Master's thesis
Year: 2011
Downloads: 118
Quote: 0
Read: Download Dissertation

Abstract


Narrow linewidth fiber laser has been widely used in long distance transmission and high resolution analysis for optical spectrum. What is more, it’s also the necessarily light source for M-Z interferometer sensor. This article mainly focused on the way to get the low linewidth output laser.The following is exactly what i have done in the past several months:1.I have announced one new structure for fiber laser in my article, using FBG F-P etalon and FBG Sagnac ring to be the optical filter. Because of their great filtering performance, which are good for narrow linewidth output laser.2. Through the coupled mode equation., I got to know the transmission formula of FBG F-P etalon and FBG Sagnac ring. In the end, I analysed this reflection formula of FBG F-P etalon and FBG Sagnac ring.with MATLAB and made a research of all the key point which would have some impact on the FBG F-P etalon’ and FBG Sagnac ring’s transmission characteristics:3. Through all the work mentioned, I got exactly the parameter of FBG F-P etalon and FBG Sagnac ring. Now it is time to achieve my ring cavity fiber laser. Based on the rate equation and propagation equation, the threshold power expression and the output power’s expression can be worked out. At last, I made a comprehensive analysis of the ring cavity fiber laser with FBG F-P etalon and FBG Sagnac ring with MATLAB.4. Based on the equipment of our lab, a kind of erbium-doped fiber laser was accomplished. With the fiber length is 6.5m, its threshold power 15mw,slope efficiency of 32% and a Side Mode Suppression Ratio of over 50dB, its linewidth was lower than O.lnm and The range of wavelength shift is smaller than O.Olnm.

Related Dissertations

  1. Single Longitudinal Mode Fiber Laser and Switchable Multi-wavelength Fiber Laser,TN248
  2. Short-Term Frequency Stability Measurement of 2μm Solid-State Laser,TN248.1
  3. Research on Green and Blue High Statblity Solid-State Laser,TN248
  4. Study of the Dual-frequency Fiber Laser Used in the Generation of Terahertz Wave,TN248
  5. Experimental Research of Single Longitudinal Mode TEA CO2 Laser,TN248.22
  6. Research on Distrbuted Bragg Reflector Single-frequency Fiber Laser,TN248
  7. Fiber Lasers and High Performance Photodetectors for THz Generation,TN248
  8. Study of Single Longitudinal Mode and Injection Locking in Rapidly Tunable TEA CO2 Laser,TN248.5
  9. Study of Strain Measuring Method Based on Optical Fiber Resonant Cavity,TN248
  10. Experimental Research of the LD Pumped Slm Laser and Frequency Stability,TN248.22
  11. Study on Optical Bistability and Fiber Lasers,TN248
  12. Investigation on High Power and Low Noise Tunable Single-frequency Fiber Laser for All Optics Communications,TN248
  13. F-P Cavity and DFB Yb~(3+)-doped Fiber Laser Research,TN248
  14. Study on Multi-wavelength, Single Longitudinal Mode Fiber Lasers,TN248
  15. The Study of Er-doped Fiber Laser Based on Fiber Ring Resonator,TN248
  16. Design and Experimental Research of Single Longitudinal Mode YAG Laser Frequency Discrimination System,TN248
  17. Research on Single Longitudinal Mode Laser of Active Frequency Stabilization Control System,TN248
  18. Study of All-Solid-State Single Frequency Laser Technology,TN248
  19. Study of Photonic Generation of Millimeter-wave Signal and Associated Techniques for Radio-over-fiber System,TN929.5
  20. Research on the System of Wind Lidar Based on Frequency Discrimination by Angle-Tuned F-P Etalon,TN958.98

CLC: > Industrial Technology > Radio electronics, telecommunications technology > Photonics technology,laser technology > Laser technology, the maser > Laser
© 2012 www.DissertationTopic.Net  Mobile