Long-term drift laser frequency stabilization using purely optical reference
arXiv:1006.3242 · doi:10.1063/1.1487895
Abstract
We describe an apparatus for the stabilization of laser frequencies that prevents long term frequency drifts. A Fabry-Perot interferometer is thermostated by referencing it to a stabilized He-Ne laser (master), and its length is scanned over more than one free spectral range allowing the analysis of one or more lines generated by other (slave) lasers. A digital acquisition system makes the detection of the position of all the laser peaks possible, thus producing both feedback of both the thermostat and the error signal used for stabilizing the slave lasers. This technique also allows for easy, referenced scanning of the slave laser frequencies over range of several hundred MHz, with a precision of the order of a few MHz. This kind of stabilization system is particularly useful when no atomic or molecular reference lines are available, as in the case of rare or short lived radioactive species.
13 pages, 5 figures, published (2002)
Cited by in corpus (11)
- CeNTREX: A new search for time-reversal symmetry violation in the Tl nucleus
- Optical transfer cavity stabilization using current-modulated injection-locked diode lasers
- Laser frequency stabilization using a commercial wavelength meter
- Microcontroller-based locking in optics experiments
- A 1.82 m^2 ring laser gyroscope for nano-rotational motion sensing
- A Scalable, Self-Analyzing Digital Locking System for use on Quantum Optics Experiments
- Microcontroller based scanning transfer cavity lock for long-term laser frequency stabilization
- Ion detection in the photoionization of a Rb Bose-Einstein condensate
- Long-term laser frequency stabilization using fiber interferometers
- Tutorial on laser locking techniques and the manufacturing of vapor cells for spectroscopy
- Laser frequency stabilization using a transfer interferometer