Phys. Rev. ST Accel. Beams 11, 061301 (2008) [6 pages]

Production and characterization of attosecond electron bunch trains

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Christopher M. S. Sears *, Eric Colby, Rasmus Ischebeck, Christopher McGuinness, Janice Nelson, Robert Noble, Robert H. Siemann, James Spencer, and Dieter Walz
Stanford Linear Accelerator Center, Menlo Park, California 94025, USA

Tomas Plettner and Robert L. Byer
Stanford University, Stanford, California 94305, USA

Received 1 February 2008; published 5 June 2008

We report the production of optically spaced attosecond electron microbunches produced by the inverse free-electron-laser (IFEL) process. The IFEL is driven by a Ti:sapphire laser synchronized with the electron beam. The IFEL is followed by a magnetic chicane that converts the energy modulation into the longitudinal microbunch structure. The microbunch train is characterized by observing coherent optical transition radiation (COTR) at multiple harmonics of the bunching. Experimental results are compared with 1D analytic theory showing good agreement. Estimates of the bunching factors are given and correspond to a microbunch length of 410 attosec FWHM. The formation of stable attosecond electron pulse trains marks an important step towards direct laser acceleration.


©2008 The American Physical Society

URL: http://link.aps.org/doi/10.1103/PhysRevSTAB.11.061301
DOI: 10.1103/PhysRevSTAB.11.061301
PACS: 41.75.Jv, 41.60.Cr, 41.60.Dk, 41.85.Ct

* cmsears@slac.stanford.edu

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