activity
20092014
most citedRelativistic plasma optics enabled by near-critical density nanostructured material

1 citations · 1 across the 2 of their papers we have counts for

collaborators

6 papers

physics.plasm-ph2014★ 1 cited

Relativistic plasma optics enabled by near-critical density nanostructured material

J. H. Bin, W. J. Ma, H. Y. Wang +11

The nonlinear optical properties of a plasma due to the relativistic electron motion in an intense laser field are of fundamental importance for current research and the generation…

physics.plasm-ph2014

Bright subcycle XUV pulse from a single dense relativistic electron sheet

W. J. Ma, J. H. Bin, H. Y. Wang +11

Relativistic electrons are prodigious sources of photons. Beyond classical accelerators, ultra-intense laser interactions are of particular interest as they allow the coherent moti…

physics.plasm-ph2013

Ultrasmall divergence of laser-driven ion beams from nanometer thick foils

J. H. Bin, W. J. Ma, K. Allinger +11

We report on experimental studies of divergence of proton beams from nanometer thick diamond-like carbon (DLC) foils irradiated by an intense laser with high contrast. Proton beams…

physics.plasm-ph2010

Dynamics of Nanometer-Scale Foil Targets Irradiated with Relativistically Intense Laser Pulses

R. Hörlein, S. Steinke, A. Henig +15

In this letter we report on an experimental study of high harmonic radiation generated in nanometer-scale foil targets irradiated under normal incidence. The experiments constitute…

nucl-ex2010

Introducing the Fission-Fusion Reaction Process: Using a Laser-Accelerated Th Beam to produce Neutron-Rich Nuclei towards the N=126 Waiting Point of the r Process

D. Habs, P. G. Thirolf, M. Gross +6

We propose to produce neutron-rich nuclei in the range of the astrophysical r-process around the waiting point N=126 by fissioning a dense laser-accelerated thorium ion bunch in a…

physics.plasm-ph2009

Efficient ion acceleration by collective laser-driven electron dynamics with ultra-thin foil targets

S. Steinke, A. Henig, M. Schnürer +11

Experiments on ion acceleration by irradiation of ultra-thin diamond-like carbon (DLC) foils, with thicknesses well below the skin depth, irradiated with laser pulses of ultra-high…