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20022009
most citedMagnetic confinement of massless Dirac fermions in graphene

469 citations

Showing physics.plasm-phShow all

8 papers · 1 filter

physics.plasm-ph20091 cited

Radiation reaction effects on ion acceleration in laser foil interaction

Min Chen, Alexander Pukhov, Tong-Pu Yu +1

Radiation reaction effects on ion acceleration in laser foil interaction are investigated via analytical modeling and multi-dimensional particle-in-cell simulations. We find the ra…

physics.plasm-ph200833 cited

On collisions driven negative energy waves and Weibel instability of a relativistic electron beam in a quasi-neutral plasma

Anupam Karmakar, Naveen Kumar, Gennady Shvets +2

A new quasi-neutral model describing the Weibel instability of a high-current relativistic beam propagating through a resistive plasma is developed. It treats beam electrons as kin…

physics.plasm-ph20087 cited

Three dimensional filamentary structures of a relativistic electron beam in Fast Ignition plasmas

Anupam Karmakar, Naveen Kumar, Oleg Polomarov +2

The filamentary structures and associated electromagnetic fields of a relativistic electron beam have been studied by three dimensional particle-in-cell (PIC) simulations in the co…

physics.plasm-ph200817 cited

Extreme ultraviolet emission from dense plasmas generated with sub-10-fs laser pulses

J. Osterholz, F. Brandl, M. Cerchez +7

The extreme ultraviolet (XUV) emission from dense plasmas generated with sub-10-fs laser pulses with varying peak intensities up to 3*10^16 W/cm^2 is investigated for different tar…

physics.plasm-ph200864 cited

Absorption of Ultrashort Laser Pulses in Strongly Overdense Targets

M. Cerchez, R. Jung, J. Osterholz +4

We report on the first absorption experiments of sub-10 fs high-contrast Ti:Sa laser pulses incident on solid targets. The very good contrast of the laser pulse assures the formati…

physics.plasm-ph200841 cited

Transient electric fields in laser plasmas observed by proton streak deflectometry

T. Sokollik, M. Schnuerer, S. Ter-Avetisyan +9

A novel proton imaging technique was applied which allows a continuous temporal record of electric fields within a time window of several nanoseconds. This "proton streak deflectom…