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Nonlinear optics
Thermal self-interaction of laser beams in water within the anomalous density range
E. Z. Gribova, Yu. M. Sorokin
Abstract:
A theoretical model is proposed in order to account for the temperature dependence of the refractive index of water in the range of parameters not far from the crystallization point. It is shown that the thermal self-interaction results in defocusing in supercooled water and in the temperature range of the anomalous density. Penetrating self-convection is predicted and confirmed experimentally for this case: this is manifested by a local change of the sign of the buoyancy forces in the region occupied by a laser beam. The possibility of suppression of such self-convection and enhancement of symmetric nonlinear refraction effects near an extremum of the density of water is also predicted and demonstrated experimentally.
Received: 10.03.1989
Citation:
E. Z. Gribova, Yu. M. Sorokin, “Thermal self-interaction of laser beams in water within the anomalous density range”, Kvantovaya Elektronika, 17:4 (1990), 488–492 [Sov J Quantum Electron, 20:4 (1990), 422–426]
Linking options:
https://www.mathnet.ru/eng/qe5946 https://www.mathnet.ru/eng/qe/v17/i4/p488
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Abstract page: | 126 | Full-text PDF : | 73 | First page: | 1 |
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