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Theory of Thermal Imaging Using Infrared to Visible Image Up-Conversion

1972/12/01 by K. F. Hulme, K.F. Hulme, J. Warner
Physics and Astronomy · Engineering · #Photorefractive and Nonlinear Optics #Solid State Laser Technologies #Optical and Acousto-Optic Technologies

paper · doi:10.1364/ao.11.002956

Abstract

A novel method of thermal imaging based on the up-conversion of infrared radiation in nonlinear optical crystals is analyzed. An equation is derived giving the temperature resolution in terms of the pump laser energy E(p). For a proustite-ruby system based on the 8-13-micro band, a temperature resolution of better than 1 degrees C is predicted when the number of resolvable spots is 100 x 100 and E(p) = 10 J. Numerical results are also provided for eighteen possible systems having different combinations of pump laser (neodymium or ruby), infrared band (3-5 micro or 8-13 micro), nonlinear crystal (Ag(3)AsS(3), AgGas(2), ZnGeP(2), or LiNbO(3)), and imaging photocathode [S-1, S-20, GaAs/(Cs,O), or In(As,P)/(Cs,O)].

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