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Titlebook: Stimulated Raman Scattering; N. G. Basov Book 1982 Springer Science+Business Media New York 1982

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T. M. Makhviladze,M. E. Sarychevty much meant functional specifications. The idea that stakeholders in a system (its implementers, its end-users, its maintainers, and so forth) might want something other than an alphabetic list of function definitions was just taking hold. There was an exciting (to me) vision of stakeholders acces
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T. M. Makhviladze,M. E. Sarychevty much meant functional specifications. The idea that stakeholders in a system (its implementers, its end-users, its maintainers, and so forth) might want something other than an alphabetic list of function definitions was just taking hold. There was an exciting (to me) vision of stakeholders acces
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Investigation of the Formation and Self-Focusing of Stimulated Raman Scattering of Light in Condensthe first time that in substances having small Kerr constants self-focusing of SRS of light takes place in the absence of self-focusing of the exciting radiation. It is shown that the SES self-focusing regime changes when the excitation conditions change and depends on the power converted into SRS.
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Investigation of the Angular Distribution of Stimulated Raman Scattering of Light,II emission on the basis of the Stokes—anti-Stokes four-photon processes. An estimate is presented of the relative intensity of the off-axis SRS radiation and of the total intensity of the second and higher Stokes components.
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Investigation of the Spectral Distribution of the Intensity of the Components of Stimulated Raman S at the SRS self-focusing dots and the angular directivity of the components in media with large Kerr constants can be explained from the point of view of the concept of the propagation of high-power optical radiation in a medium in the form of moving focal regions.
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Stationary SRS Regimes in the Fields of Ultrashort Pulses,lized — both single pulses and periodic trains. The influence of the relaxation processes on the propagation of SRS solitons and the stability of the soliton regimes to the action of small perturbations of various types are investigated. The results are applicable to the case of two-photon resonant absorption of pulses of different frequencies.
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