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20022013
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physics.plasm-ph200938 cited

Statistical kinetic treatment of relativistic binary collisions

F. Peano, M. Marti, L. O. Silva +1

In particle-based algorithms, the effect of binary collisions is commonly described in a statistical way, using Monte Carlo techniques. It is shown that, in the relativistic regime…

physics.plasm-ph20089 cited

Expansion of nanoplasmas and laser-driven nuclear fusion in single exploding clusters

F. Peano, J. L. Martins, R. A. Fonseca +6

The expansion of laser-irradiated clusters or nanodroplets depends strongly on the amount of energy delivered to the electrons and can be controlled by using appropriately shaped l…

physics.plasm-ph20087 cited

Prospects for all-optical ultrafast muon acceleration

F. Peano, J. Vieira, R. Mulas +3

A scheme for fast, compact, and controllable acceleration of heavy particles in vacuum has been recently proposed [F. Peano et al., New J. Phys. 10 033028 (2008)], wherein two coun…

physics.plasm-ph200814 cited

Direct Acceleration of Ions With Variable-frequency Lasers

F. Peano, J. Vieira, R. A. Fonseca +3

A method is proposed for producing monoergetic, high-quality ion beams in vacuum, via direct acceleration by the electromagnetic field of two counterpropagating, variable-frequency…

physics.plasm-ph200860 cited

Hamiltonian formulation and analysis of a collisionless fluid reconnection model

E. Tassi, P. J. Morrison, F. L. Waelbroeck +1

The Hamiltonian formulation of a plasma four-field fluid model that describes collisionless reconnection is presented. The formulation is noncanonical with a corresponding Lie-Pois…

physics.plasm-ph200819 cited

All-optical trapping and acceleration of heavy particles

F. Peano, J. Vieira, L. O. Silva +2

A scheme for fast, compact, and controllable acceleration of heavy particles in vacuum is proposed, in which two counterpropagating lasers with variable frequencies drive a beat-wa…