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Laser-driven electron beam generation for secondary photon sources with few terawatt laser pulses

机译:用于次级光子源的激光驱动的电子束生成,具有少量Terawatt激光脉冲

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Relativistic electron beams accelerated by laser wakefield have the ability to serve as sources of collimated, point-like and femtosecond X-ray radiation. Experimental conditions for generation of stable quasi-monoenergetic electron bunches using a femtosecond few-terawatt laser pulse (600 mJ, 50 fs) were investigated as they are crucial for generation of stable betatron radiation and X-ray pulses from inverse Compton scattering. A mixture of helium with argon, and helium with an admixture of synthetic air were tested for this purpose using different backing pressures and the obtained results are compared. The approach to use synthetic air was previously proven to stabilize the energy and energy spread of the generated electron beams at the given laser power. The accelerator was operated in nonlinear regime with forced self-injection and resulted in the generation of stable relativistic electron beams with an energy of tens of MeV and betatron X-ray radiation was generated in the keV range. A razor blade was tested to create a steep density gradient in order to improve the stability of electron injection and to increase the total electron bunch charge. It was proven that the stable electron and X-ray source can be built at small-scale facilities, which readily opens possibilities for various applications due to availability of such few-terawatt laser systems in many laboratories around the world.
机译:激光韦克菲尔德加速的相对论电子束具有作为准直,点状和飞秒X射线辐射的来源的能力。研究了使用Femtosecond的稳定准单体电子束的实验条件使用FemtoSecond少量激光脉冲(600MJ,50fs),因为它们对于从逆康顿散射产生稳定的β辐射和X射线脉冲至关重要。用不同的背衬压力测试具有氩气的氦气和具有合成空气混合的氦气的混合物,并使用不同的背衬压力并进行得到的结果。使用合成空气的方法先前被证明以稳定在给定激光功率下产生的电子束的能量和能量扩展。在非线性状态下,通过强制自喷射在非线性状态下操作,并导致产生具有数十MEV的能量的稳定相对论电子束,并且在KEV范围内产生βX射线辐射。测试剃刀刀片以产生陡峭的密度梯度,以提高电子注入的稳定性并增加总电子束充电。据证明,稳定的电子和X射线源可以在小规模的设施中建造,因此由于世界各地的许多实验室中的这种少数Terawatt激光系统的可用性,易于打开各种应用的可能性。

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