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一种用于激光尾场加速实验的高分辨率、宽能量接收谱仪。

A high resolution, broad energy acceptance spectrometer for laser wakefield acceleration experiments.

作者信息

Sears Christopher M S, Cuevas Sofia Benavides, Schramm Ulrich, Schmid Karl, Buck Alexander, Habs Dieter, Krausz Ferenc, Veisz Laszlo

机构信息

Max-Planck-Institut für Quantenoptik, 85748 Garching bei München, Germany.

出版信息

Rev Sci Instrum. 2010 Jul;81(7):073304. doi: 10.1063/1.3458013.

Abstract

Laser wakefield experiments present a unique challenge in measuring the resulting electron energy properties due to the large energy range of interest, typically several 100 MeV, and the large electron beam divergence and pointing jitter >1 mrad. In many experiments the energy resolution and accuracy are limited by the convolved transverse spot size and pointing jitter of the beam. In this paper we present an electron energy spectrometer consisting of two magnets designed specifically for laser wakefield experiments. In the primary magnet the field is produced by permanent magnets. A second optional electromagnet can be used to obtain better resolution for electron energies above 75 MeV. The spectrometer has an acceptance of 2.5-400 MeV (E(max)/E(min)>100) with a resolution of better than 1% rms for electron energies above 25 MeV. This high resolution is achieved by refocusing electrons in the energy plane and without any postprocessing image deconvolution. Finally, the spectrometer employs two complimentary detection mechanisms: (1) absolutely calibrated scintillation screens imaged by cameras outside the vacuum chamber and (2) an array of scintillating fibers coupled to a low-noise charge-coupled device.

摘要

由于感兴趣的能量范围很大(通常为几百兆电子伏特),且电子束发散和指向抖动大于1毫弧度,激光尾场实验在测量产生的电子能量特性方面面临独特挑战。在许多实验中,能量分辨率和精度受束流横向光斑尺寸和指向抖动卷积的限制。在本文中,我们展示了一种由两个专门为激光尾场实验设计的磁体组成的电子能谱仪。在初级磁体中,磁场由永久磁体产生。第二个可选的电磁体可用于对能量高于75兆电子伏特的电子获得更好的分辨率。该能谱仪的接受范围为2.5 - 400兆电子伏特(E(max)/E(min)>100),对于能量高于25兆电子伏特的电子,分辨率优于1%均方根误差。这种高分辨率是通过在能量平面上对电子进行重新聚焦且无需任何后处理图像去卷积来实现的。最后,该能谱仪采用两种互补的探测机制:(1)由真空室外的相机成像的经过绝对校准的闪烁屏,以及(2)与低噪声电荷耦合器件相连的闪烁光纤阵列。

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