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An ultra-high gain and efficient amplifier based on Raman amplification in plasma

机译:基于等离子体中拉曼放大的超高增益高效放大器

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摘要

Raman amplification arising from the excitation of a density echelon in plasma could lead to amplifiers that significantly exceed current power limits of conventional laser media. Here we show that 1-100 J pump pulses can amplify picojoule seed pulses to nearly joule level. The extremely high gain also leads to significant amplification of backscattered radiation from "noise", arising from stochastic plasma fluctuations that competes with externally injected seed pulses, which are amplified to similar levels at the highest pump energies. The pump energy is scattered into the seed at an oblique angle with 14 J sr(-1), and net gains of more than eight orders of magnitude. The maximum gain coefficient, of 180 cm(-1), exceeds high-power solid-state amplifying media by orders of magnitude. The observation of a minimum of 640 J sr(-1) directly backscattered from noise, corresponding to approximate to 10% of the pump energy in the observation solid angle, implies potential overall efficiencies greater than 10%.
机译:由等离子体中的密度阶梯激发引起的拉曼放大可能导致放大器大大超过常规激光介质的当前功率极限。在这里,我们显示1-100 J的泵浦脉冲可以将皮焦耳种子脉冲放大到接近焦耳水平。极高的增益还导致来自“噪声”的反向散射辐射的显着放大,这是由与外部注入的种子脉冲竞争的随机等离子体波动引起的,该脉冲在最高泵浦能量下被放大到相似的水平。泵浦能量以14 J sr(-1)的斜角散布到种子中,净增益超过8个数量级。最大增益系数为180 cm(-1),比高功率固态放大媒体高出几个数量级。观察到至少640 J sr(-1)从噪声直接反向散射,相当于在观察立体角中大约相当于泵浦能量的10%,这意味着潜在的整体效率大于10%。

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