Ekerfelt Henrik, Hansson Martin, Gallardo González Isabel, Davoine Xavier, Lundh Olle
Department of Physics, Lund University, P.O. Box 118, S-22100, Lund, Sweden.
CEA, DAM, DIF, Bruyères-le-Châtel, 91297, Arpajon, France.
Sci Rep. 2017 Sep 25;7(1):12229. doi: 10.1038/s41598-017-12560-8.
One challenge in the development of laser wakefield accelerators is to demonstrate sufficient control and reproducibility of the parameters of the generated bunches of accelerated electrons. Here we report on a numerical study, where we demonstrate that trapping using density down-ramps allows for tuning of several electron bunch parameters by varying the properties of the density down-ramp. We show that the electron bunch length is determined by the difference in density before and after the ramp. Furthermore, the transverse emittance of the bunch is controlled by the steepness of the ramp. Finally, the amount of trapped charge depends both on the density difference and on the steepness of the ramp. We emphasize that both parameters of the density ramp are feasible to vary experimentally. We therefore conclude that this tunable electron accelerator makes it suitable for a wide range of applications, from those requiring short pulse length and low emittance, such as the free-electron lasers, to those requiring high-charge, large-emittance bunches to maximize betatron X-ray generation.
激光尾场加速器发展中的一个挑战是要证明对所产生的加速电子束团参数有足够的控制和可重复性。在此我们报告一项数值研究,我们证明使用密度下降斜坡进行俘获能够通过改变密度下降斜坡的特性来调节几个电子束团参数。我们表明电子束团长度由斜坡前后的密度差决定。此外,束团的横向发射度由斜坡的陡度控制。最后,俘获电荷量既取决于密度差也取决于斜坡的陡度。我们强调密度斜坡的这两个参数在实验中都是可行的可变参数。因此我们得出结论,这种可调谐电子加速器适用于广泛的应用,从那些需要短脉冲长度和低发射度的应用,如自由电子激光器,到那些需要高电荷量、大发射度束团以最大化电子回旋加速器X射线产生的应用。