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and similar ideas, where the predicted enhancement of acceleration radiation is caused by nonadiabatic switching effects (at the entrance and the exit of the cavity), the mechanism considered in the present Letter is a consequence of the real acceleration a=qE/m felt by the electrons.
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and similar ideas, where the predicted enhancement of acceleration radiation is caused by nonadiabatic switching effects (at the entrance and the exit of the cavity), the mechanism considered in the present Letter is a consequence of the real acceleration a=qE/m felt by the electrons.
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The Munich group has taken over the obligation to build a 1kHz/50PW system for the EU project ELI: http://www.extreme-light-infrastructure.eu.
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The Munich group has taken over the obligation to build a 1kHz/50PW system for the EU project ELI: http://www.extreme-light-infrastructure.eu.
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JSYRES 0909-0495 10.1107/S0909049599015113], could in principle also be interpreted as a signature of the Unruh effect (in the weak-field limit), since the involved electrons in the crystal can be considered quasifree. However, the setup discussed here offers more options for tuning (e.g., tapering of the undulator) and can be applied to a wider range of parameters. For instance, it involves much stronger fields (i.e., many laser photons interact coherently with the electrons) and one can reach higher energies (increasing Πand using an optical laser instead of an undulator, etc.). Moreover, the efficiency is much larger, e.g., the considerations above show that it might even be possible to reach the (nonperturbative) regime where many photon pairs are created coherently (“photon pair laser).
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