Remote method of measuring subsurface water temperatures

Optics: measuring and testing – Optical pyrometers

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356349, 374117, G01B 902

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active

050095005

ABSTRACT:
A technique for measuring the unknown subsurface temperature T.sub.s of a bulk transparent medium such as ocean water by splitting a pulsed laser beam having a high intensity into two sub-beams, one of which is a probe beam directed into the medium. The intensity of the output beam pulses exceeds a predetermined threshold sufficient to cause stimulated Brillouin scattering within the medium and to produce therefrom a phase-conjugate beam which propagates along the path of the first sub-beam but in the opposite direction. The second sub-beam combines with the PC beam and the combined beams mix at the cathode of a photodetector thereby producing a heterodyne frequency proportional to the temperature T.sub.s. Converts the heterodyne frequency into a temperature value yields the desired unknown T.sub.s.

REFERENCES:
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patent: 4778261 (1988-10-01), Boyd et al.
Hirschberg et al., "Speed of Sound and Temperature in the Ocean by Brillovin Scattering" Applied Optics (vol. 23, No. 15) (Aug. 1, 1984), pp. 2624-2628.
Ben-Yosef et al., "Measurement and Analysis of Mechanical Vibrations by Means of Optical Heterodyning Techniques" Journal of Physics E. vol. 7, No. 3 (Mar. 1974), pp. 218-220.
Optical Phase Conjugation by V. V. Shkunov, et al., "Scientific American," pp. 54-59.
Applications of Optical Phase Conjugation by D. M. Pepper, "Scientific American," pp. 74-83 (Jan. 1986).
Development of Simple Equations for Accurate and More Realistic Calculation of the Speed of Sound in Seawater by C. C. Leroy, "Journal of Acoustical Society of America," No. 216, vol. 46, pp. 216-226 (1969).

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