论文标题
在ELI梁线上开发基于LPA的硬X射线源
Development of LPA based hard X-ray sources at ELI Beamlines
论文作者
论文摘要
我们报告了基于激光 - 等离子加速器的X射线源在Eli Beainlines上的开发。 ELI梁线的主要目标之一是向来自各个研究领域的用户提供超短粒子和复杂X射线源的光束。基于激光 - 血浆加速度(LPA)的两个硬X射线BETATRON源具有较高的光子通量。第一个来源是位于实验厅E2中的γ光束线。它提供X射线脉冲,从Betatron的1-100 KEV和Compton方案中的MEV提供X射线脉冲。设计了一种新颖的X射线光学元件是对用户应用程序这些硬X射线源的重点光学元件。基于LPA的第二个硬X射线源正在ELI等离子体物理平台(P3)中开发,该平台将作为主动诊断HED和实验室天体物理学,多光束实验和基础研究。现在正在委托该来源,我们将提出第一个实验结果。此外,我们提出了一种新的方案,用于增强X射线通量基于与两色激光场相互作用而从非线性共振增强的基于BETATRON振荡的X射线通量。此外,我们将引入一种具有高灵敏度的新型光学探测技术,以表征激光 - 血浆加速器的低密度气体目标。通过对物体之间的对象和中继成像在单个通过之间的对象形象中,通过多次通过探针梁的通行证来实现这一目标。
We report the laser-plasma accelerator-based X-ray sources development at ELI beamlines. One of the main objectives of ELI Beamlines is to provide beams of ultrashort particle and complex X-ray sources to users from various research fields. Two hard X-ray betatron sources with high photon flux based on laser-plasma acceleration (LPA) are being commissioned. The first source is the Gammatron beamline located in Experimental Hall E2. It provides X-ray pulses of energies from 1-100 keV in betatron and up to a MeV in Compton scheme. A novel X-ray optics has been designed as a focusing optics of these hard X-ray sources for the user application. The second hard X-ray source based on LPA is being developed in the ELI plasma physics platform (P3) that will serve as an active diagnostics HED and Laboratory astrophysics, multi-beam experiments, and fundamental research. This source is now being commissioned, we will present the first experimental results. Besides, we have proposed a novel scheme for enhancing the X-ray flux based on betatron oscillations enhanced from nonlinear resonances due to interaction with a two-color laser field. In addition, we will introduce a novel optical probing technique with high sensitivity to characterize a low-density gas target for a laser-plasma accelerator. It has been achieved by employing multiple passes of the probe beam through the object and relay-imaging of the object between the individual passes.