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首页> 外文期刊>Physical Review. Accelerators and Beams >Density measurement in a laser-plasma-accelerator capillary using Raman scattering
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Density measurement in a laser-plasma-accelerator capillary using Raman scattering

机译:使用拉曼散射的激光等离子加速器毛细管中的密度测量

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摘要

Laser wakefield accelerators have shown 1 GeV electron beams with some 10 pC charge from centimeter-length gas capillaries. The electrons are accelerated by the field of a plasma wave trailing an intense laser pulse. For improving the stability, electron injection and acceleration should be separated. One possible scheme is self-injection with a plasma density gradient and subsequent acceleration at constant density. This can be realized by embedding a high-density gas jet into a capillary. A critical parameter for this scheme to work is the realization of a specific density gradient, therefore a robust measurement is desirable. A new method utilizing the density dependence of Raman scattering has been used to characterize the high-density region of a neutral gas within a capillary with a few ten micrometer longitudinal resolution. This allowed us to measure a density drop of a factor of 4 within 200 micrometers.
机译:激光尾场加速器显示出1 GeV电子束,其厘米长的气体毛细管带约10 pC电荷。电子在强激光脉冲后的等离子体波场中加速。为了提高稳定性,应将电子注入和加速分开。一种可能的方案是具有等离子体密度梯度的自注入以及随后以恒定密度进行的加速。这可以通过将高密度气体射流嵌入毛细管中来实现。该方案起作用的关键参数是特定密度梯度的实现,因此需要一种可靠的测量方法。一种利用拉曼散射的密度依赖性的新方法已被用来表征毛细管内中性气体的高密度区域,其纵向分辨率为几十微米。这使我们能够在200微米内测量密度下降4倍。

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