论文标题

内壳固体密度Mg X射线激光器中碰撞效应的模拟

Simulations of Collisional Effects in an Inner-Shell Solid-Density Mg X-Ray Laser

论文作者

Ren, Shenyuan, Vinko, Sam, Wark, Justin S.

论文摘要

内部壳k $α$ X射线激光器是通过泵送气态,实心和液体目标创建的,并具有自由电子激光器(FELS)的强烈X射线输出。对于气态目标而言,激光依赖于在时间尺度短的时间尺度上创建K-shell核心孔,而通过螺旋螺旋衰败的填充。在固体和液体密度系统的情况下,碰撞效应也将很重要,不仅会影响人群,而且影响线宽,这两者都会影响整体增益程度及其持续时间。但是,迄今为止,尚未对这种碰撞效应进行广泛的研究。我们在这里使用固体密度mg中内壳激光的CCFLE代码进行了初始仿真,在那里我们自言自语地对待传入的FEL辐射的效果和MG系统的原子动力学,包括辐射,螺旋螺旋和碰撞效应。我们发现,除了最初冷的系统的K $α$以外,激光过渡的下部状态的碰撞人群的结合以及线条的扩大。即使假设瞬时打开了FEL泵,我们也发现固体系统中增益的持续时间是次秒。

Inner-shell K$α$ x-ray lasers have been created by pumping gaseous, solid, and liquid targets with the intense x-ray output of free-electron-lasers (FELs). For gaseous targets lasing relies on the creation of K-shell core-holes on a time-scale short compared with filling via Auger decay. In the case of solid and liquid density systems, collisional effects will also be important, affecting not only populations, but also line-widths, both of which impact the degree of overall gain, and its duration. However, to date such collisional effects have not been extensively studied. We present here initial simulations using the CCFLY code of inner-shell lasing in solid density Mg, where we self-consistently treat the effects of the incoming FEL radiation and the atomic kinetics of the Mg system, including radiative, Auger, and collisional effects. We find that the combination of collisional population of the lower states of the lasing transitions and broadening of the lines precludes lasing on all but the K$α$ of the initially cold system. Even assuming instantaneous turning on of the FEL pump, we find the duration of the gain in the solid system to be sub-femtosecond.

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