Numerical and experimental investigation of plasma instabilities
K. Ronald(University of Strathclyde), B. J. Kellett(Rutherford Appleton Laboratory), A. D. R. Phelps(University of Strathclyde), R. Bryson(University of Strathclyde), D. C. Speirs(University of Strathclyde), M. E. Koepke(West Virginia University), I. Vorgul(University of St Andrews), K. M. Gillespie(University of Strathclyde), M. King(University of Strathclyde), S. L. McConville(University of Strathclyde), C. G. Whyte(University of Strathclyde), R. Bingham(Rutherford Appleton Laboratory), Alan Cairns, C. W. Robertson(University of Strathclyde), Raoul Trines, K. Matheson(University of Strathclyde)
Bulletin of the American Physical Society
November 11, 2013
Cited by 0
Related Papers
Near-100 MeV protons via a laser-driven transparency-enhanced hybrid acceleration scheme
|Nature Communications|2018|449
Generation of scaled protogalactic seed magnetic fields in laser-produced shock waves
|Nature|2012|135
Turbulent amplification of magnetic fields in laboratory laser-produced shock waves
|Nature Physics|2014|112
Towards optical polarization control of laser-driven proton acceleration in foils undergoing relativistic transparency
|Nature Communications|2016|69
The D-CIXS X-ray mapping spectrometer on SMART-1
|Planetary and Space Science|2003|67