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Frequency stabilization of semiconductor lasers by resonant optical feedback
Optics Letters
|September 11, 2009
Summary
A Fabry-Perot cavity optically locks semiconductor laser frequencies, stabilizing output and significantly reducing linewidths. This method enhances laser performance for various applications.
Area of Science:
- Optics
- Laser Physics
- Semiconductor Devices
Background:
- Semiconductor lasers often exhibit broad frequency linewidths.
- Stabilizing laser frequency is crucial for precision applications.
- Optical feedback methods offer potential for laser frequency control.
Purpose of the Study:
- To investigate the use of a Fabry-Perot cavity for semiconductor laser frequency stabilization.
- To demonstrate linewidth reduction in semiconductor lasers using optical feedback.
Main Methods:
- Utilized a separate resonant Fabry-Perot cavity as an optical feedback element.
- Configured simple optical geometries to couple the cavity to the semiconductor laser.
- Monitored laser frequency and linewidth before and after implementing the feedback system.
Main Results:
- Achieved automatic optical locking of the semiconductor laser frequency to the cavity resonance.
- Reduced laser linewidth by a factor of approximately 1000.
- Narrowed the linewidth from an initial 20 MHz to approximately 20 kHz.
Conclusions:
- A Fabry-Perot cavity is an effective optical feedback element for stabilizing semiconductor laser frequencies.
- This technique significantly reduces laser linewidth, improving spectral purity.
- The method offers a practical approach to enhance semiconductor laser performance.

