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Thermally induced optical bistability in CdHgTe
Authors:D. Craig  M.R. Dyball  A. Miller
Affiliation:Royal Signals and Radar Establishment, Malvern, Worcestershire WR14 3PS, UK
Abstract:We report optical bistability in a room temperature, uncoated Cd0.185Hg0.815Te etalon using a cw CO2 laser at 10.6 μm. The results are consistent with a band gap resonant, dispersive nonlinearity induced by a thermal shift of the band gap energy through interband and free carrier absorption. A refractive index temperature coefficient, dn/dT ~ ? 1 × 10-3K-1 was measured, and bistability was observed at incident powers of 20 mW.
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