DocumentCode
1119874
Title
Modes of a tilted-mirror optical resonator for the far infrared
Author
Wells, W.H.
Author_Institution
Quantum electronics Group, Jet Propulsion Lab., Pasadena, CA
Volume
2
Issue
5
fYear
1966
fDate
5/1/1966 12:00:00 AM
Firstpage
94
Lastpage
102
Abstract
In an extension of the work of A. G. Fox and T. Li of Bell Telephone Laboratories, a study was made of the modes of tilted-plane mirrors having enough tilt to use the spillover radiation (at a straight edge) as output coupling. This geometry seems desirable as an oscillator to intercept a molecular beam and extract coherent power in the far infrared. Control of the tilt angle provides variable
. Amplitude and phase of the output are smooth enough to use cylindrical optics for focusing or collimating the output. The three lowest-order two-dimensional modes were studied which, under reasonable conditions, are determined by a single parameter. It is
, where α = mirror tilt, b = mirror separation, and λ = wavelength. The lowest mode (TEM0 ) has loss per pass that increases almost linearly from 3 percent at
to 37 percent at
. The output appears to diverge from a virtual source about 3b behind the spillover edge of the shorter mirror. The virtual source of the lowest mode is displaced (0.7 to 1.1)(
inward from the spillover edge. The mathematical problem proved to be an interesting exercise in devising ways to isolate an eigenfunction of an integral operator when the eigenvalues are nearly equal.
. Amplitude and phase of the output are smooth enough to use cylindrical optics for focusing or collimating the output. The three lowest-order two-dimensional modes were studied which, under reasonable conditions, are determined by a single parameter. It is
, where α = mirror tilt, b = mirror separation, and λ = wavelength. The lowest mode (TEM
to 37 percent at
. The output appears to diverge from a virtual source about 3b behind the spillover edge of the shorter mirror. The virtual source of the lowest mode is displaced (0.7 to 1.1)(
inward from the spillover edge. The mathematical problem proved to be an interesting exercise in devising ways to isolate an eigenfunction of an integral operator when the eigenvalues are nearly equal.Keywords
Eigenvalues and eigenfunctions; Geometrical optics; Laser feedback; Laser modes; Mirrors; Molecular beams; Optical coupling; Optical diffraction; Optical feedback; Optical resonators;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1966.1074005
Filename
1074005
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