001     132136
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037 _ _ |a FZJ-2013-01374
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|a Mikhailova, J. M.
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245 _ _ |a Isolated Attosecond Pulses from Laser-Driven Synchrotron Radiation
260 _ _ |a College Park, Md.
|b APS
|c 2012
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520 _ _ |a A quantitative theory of attosecond pulse generation in relativistically driven overdense plasma slabs is presented based on an explicit analysis of synchrotron-type electron trajectories. The subcycle, fieldcontrolled release, and subsequent nanometer-scale acceleration of relativistic electron bunches under the combined action of the laser and ionic potentials give rise to coherent radiation with a high-frequency cutoff, intensity, and radiation pattern explained in terms of the basic laws of synchrotron radiation. The emerging radiation is confined to time intervals much shorter than the half-cycle of the driver field. This intuitive approach will be instrumental in analyzing and optimizing few-cycle-laser-driven relativistic sources of intense isolated extreme ultraviolet and x-ray pulses.
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|a Zheltikov, A. M.
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|a Krausz, F.
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|a 10.1103/PhysRevLett.109.245005
|g Vol. 109, no. 24, p. 245005
|n 24
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|t Physical review letters
|v 109
|x 1079-7114
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