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Measurements on the Stimulated Raman Effect in H2 in Terms of Laser Oscillator and Amplifier Theories

机译:用激光振荡器和放大器理论测量H2中的拉曼效应

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The growth of Raman‐shifted Stokes radiation as a function of various parameters, (such as laser pump power, cavity reflectivity, etc.) has been studied in H2, a nonbeam trapping medium. It is demonstrated that growth of the Stokes converted output follows normal laser‐oscillator dynamics. On this basis the previously observed ``anomalous'' gain which is not associated with beam trapping can be explained. If a strong external Stokes signal is injected, the Raman converting medium acts as an amplifier until the laser pump power achieves an intensity sufficient to produce oscillations at the Stokes frequency. The growth of Stokes radiation was examined under dispersive conditions such that anti‐Stokes radiation was not produced, thus lending itself to a straightforward rate‐theory type of analysis.
机译:拉曼位移斯托克斯辐射随各种参数(例如激光泵浦功率,腔体反射率等)而变化的增长已在非光束捕获介质H2中进行了研究。结果表明,斯托克斯转换输出的增长遵循正常的激光振荡器动力学。在此基础上,可以解释先前观察到的与光束捕获无关的``异常''增益。如果注入了很强的外部斯托克斯信号,则拉曼转换介质将充当放大器,直到激光泵浦功率达到足以在斯托克斯频率上产生振荡的强度为止。在分散条件下检查Stokes辐射的增长,这样就不会产生抗Stokes辐射,因此适合进行直接的速率理论类型的分析。

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    《Journal of Applied Physics 》 |1968年第3期| 共6页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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