collaborators

4 papers

physics.plasm-ph2018

A novel approach to electron data background treatment in an online wide-angle spectrometer for laser-accelerated ion and electron bunches

F. H. Lindner, J. H. Bin, F. Englbrecht +12

Laser-based ion acceleration is driven by electrical fields emerging when target electrons absorb laser energy and consecutively leave the target material. A direct correlation bet…

physics.plasm-ph2018

Temporally Resolved Intensity Contouring (TRIC) for characterization of the absolute spatio-temporal intensity distribution of a relativistic, femtosecond laser pulse

Daniel Haffa, Jianhui Bin, Martin Speicher +6

Today's high-power laser systems are capable of reaching photon intensities up to W/cm^2, generating plasmas when interacting with material. The high intensity and ultras…

physics.plasm-ph2018

I-BEAT: New ultrasonic method for single bunch measurement of ion energy distribution

Daniel Haffa, Rong Yang, Jianhui Bin +31

The shape of a wave carries all information about the spatial and temporal structure of its source, given that the medium and its properties are known. Most modern imaging methods…

physics.plasm-ph2015

Efficient quasi-monoenergetic ion beams up to 18 MeV/nucleon via self-generated plasma fields in relativistic laser plasmas

Sasi Palaniyappan, Chengkun Huang, Donald C. Gautier +5

Table-top laser-plasma ion accelerators seldom achieve narrow energy spreads, and never without serious compromises in efficiency, particle yield, etc. Using massive computer simul…