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来自传输激光等离子体加速电子束的可调谐高空间光谱纯度波荡器辐射。

Tunable High Spatio-Spectral Purity Undulator Radiation from a Transported Laser Plasma Accelerated Electron Beam.

作者信息

Ghaith A, Oumbarek D, Roussel E, Corde S, Labat M, André T, Loulergue A, Andriyash I A, Chubar O, Kononenko O, Smartsev S, Marcouillé O, Kitégi C, Marteau F, Valléau M, Thaury C, Gautier J, Sebban S, Tafzi A, Blache F, Briquez F, Tavakoli K, Carcy A, Bouvet F, Dietrich Y, Lambert G, Hubert N, El Ajjouri M, Polack F, Dennetière D, Leclercq N, Rommeluère P, Duval J-P, Sebdaoui M, Bourgoin C, Lestrade A, Benabderrahmane C, Vétéran J, Berteaud P, De Oliveira C, Goddet J P, Herbeaux C, Szwaj C, Bielawski S, Malka V, Couprie M-E

机构信息

Synchrotron-SOLEIL, L'Orme des Merisiers, Saint-Aubin, Gif-sur-Yvette, 91192, France.

Université Paris-Saclay, Paris, France.

出版信息

Sci Rep. 2019 Dec 13;9(1):19020. doi: 10.1038/s41598-019-55209-4.

Abstract

Undulator based synchrotron light sources and Free Electron Lasers (FELs) are valuable modern probes of matter with high temporal and spatial resolution. Laser Plasma Accelerators (LPAs), delivering GeV electron beams in few centimeters, are good candidates for future compact light sources. However the barriers set by the large energy spread, divergence and shot-to-shot fluctuations require a specific transport line, to shape the electron beam phase space for achieving ultrashort undulator synchrotron radiation suitable for users and even for achieving FEL amplification. Proof-of-principle LPA based undulator emission, with strong electron focusing or transport, does not yet exhibit the full specific radiation properties. We report on the generation of undulator radiation with an LPA beam based manipulation in a dedicated transport line with versatile properties. After evidencing the specific spatio-spectral signature, we tune the resonant wavelength within 200-300 nm by modification of the electron beam energy and the undulator field. We achieve a wavelength stability of 2.6%. We demonstrate that we can control the spatio-spectral purity and spectral brightness by reducing the energy range inside the chicane. We have also observed the second harmonic emission of the undulator.

摘要

基于波荡器的同步辐射光源和自由电子激光(FEL)是具有高时空分辨率的重要现代物质探测工具。激光等离子体加速器(LPA)能在几厘米内产生GeV电子束,是未来紧凑型光源的理想选择。然而,由大能量分散、发散和逐脉冲涨落所带来的障碍需要特定的传输线,来塑造电子束相空间,以实现适用于用户的超短波荡器同步辐射,甚至实现自由电子激光放大。基于原理验证的、具有强电子聚焦或传输功能的基于LPA的波荡器发射,尚未展现出完整的特定辐射特性。我们报告了在具有通用特性的专用传输线中,通过基于LPA束的操控来产生波荡器辐射。在证明了特定的时空光谱特征后,我们通过改变电子束能量和波荡器场,将共振波长调谐在200 - 300nm范围内。我们实现了2.6%的波长稳定性。我们证明,通过减小弯道内的能量范围,可以控制时空光谱纯度和光谱亮度。我们还观测到了波荡器的二次谐波发射。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f686/6910930/aa2e355afb2e/41598_2019_55209_Fig1_HTML.jpg

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