Monoenergetic electron beam optimization in the bubble regimea

Within the last decade, laser-plasma based accelerators have been able to deliver electron beams with Maxwellian energy distributions characterized by effective temperatures in the range of 1 – 20 MeV . Changing the interaction parameters, the electron beam quality was improved. Especially, matching...

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Veröffentlicht in:Physics of plasmas 2005-05, Vol.12 (5)
Hauptverfasser: Malka, V., Faure, J., Glinec, Y., Pukhov, A., Rousseau, J.-P.
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creator Malka, V.
Faure, J.
Glinec, Y.
Pukhov, A.
Rousseau, J.-P.
description Within the last decade, laser-plasma based accelerators have been able to deliver electron beams with Maxwellian energy distributions characterized by effective temperatures in the range of 1 – 20 MeV . Changing the interaction parameters, the electron beam quality was improved. Especially, matching the interaction length to the dephasing length was crucial to produce an extremely high quality electron beam with a quasimonoenergetic distribution at 170 MeV . The optimization of these distributions is presented, as well as comparisons with three-dimensional particle-in-cell code simulations.
doi_str_mv 10.1063/1.1869498
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title Monoenergetic electron beam optimization in the bubble regimea
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