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The physics experiment for a laser-driven electron accelerator
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The physics experiment for a laser-driven electron accelerator

Y.C. Huang, T. Plettner, R.L. Byer, R.H. Pantell, R.L. Swent, T.I. Smith, J.E. Spencer, R.H. SiemannH. Wiedemann
Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 卷.407(1-3), 頁碼.316-321
04/1998

摘要

Accelerator Free-electron laser Laser Instrumentation Nuclear and High Energy Physics
A physics experiment for laser-driven, electron acceleration in a structure-loaded vacuum is being carried out at Stanford University. The experiment is to demonstrate the linear dependence of the electron energy gain on the laser field strength. The accelerator structure, made of dielectric, is semi-open, with dimensions a few thousand times the laser wavelength. The electrons traverse the axis of two crossed laser beams to obtain acceleration within a coherence distance. We predict that the demonstration experiment will produce a single-stage, electron energy gain of 300 keV over a 2.5 mm distance. Ultimately, acceleration gradients of 1 GeVm -1 should be possible. © 1998 Elsevier Science B.V. All rights reserved.

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https://doi.org/10.1016/S0168-9002(98)00042-4檢視
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