Phys. Rev. ST Accel. Beams 8, 040703 (2005) [6 pages]

Stability of a short Rayleigh length laser resonator

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P. P. Crooker *, J. Blau, and W. B. Colson
Physics Department, Naval Postgraduate School, 833 Dyer Road, Monterey, California 93943, USA

Received 4 January 2005; published 22 April 2005

Motivated by the prospect of constructing a short Rayleigh length free-electron laser in a high-vibration environment, we demonstrate the use of a collection of rays to study the effect of mirror vibration and distortion on the behavior of the fundamental optical mode of a cold-cavity resonator. We find that the ray collection accurately describes both on-axis and off-axis optical beams. We show that a tilt or transverse shift of a mirror causes the optical mode to rock about the original resonator axis, while a longitudinal mirror shift or a change in the mirror’s radius of curvature causes the beam diameter at a mirror to successively dilate and contract on the mirror. Results are in excellent agreement with analytic calculations and wave front propagation simulations as long as the mirrors remain large with respect to the beam diameter.


URL: http://link.aps.org/abstract/PRSTAB/v8/e040703
DOI: 10.1103/PhysRevSTAB.8.040703
PACS: 61.30.Cz, 64.70.Md

* Email address: ppcrooke@nps.edu

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