Throughout this work, the collective electromagnetic effects that mediate the transfer of energyfrom an energetic, dense plasma species to a relatively tenuous, magnetized plasma species are studied. These are observed to play an important role in a wide variety of space and astrophysical environments such as supernova remnants, coronal mass ejections, planetary bow-shocks, and man made ionospheric explosions. Laboratory experiments can create scaled versions of these systems using smaller denser plasmas characterized by similar dimensionless parameters. These can complement in-situ measurements and validate theoretical and computational models. One of the greatest advantages of laboratory experiments lies in the direct control of parameter...
Laboratory astroplasma physics experiments advance both our astrophysics and plasma physics knowledg...
Collisionless shocks are ubiquitous in many space and astrophysical plasmas. However, since space sh...
We report the first evidence of a laboratory double layer (DL) collapsing in the presence of an inst...
The explosive expansion of a dense debris plasma cloud into relatively tenuous, magnetized, ambient ...
Magnetized plasma expansions from explosive phenomena often have characteristically large ratios of ...
Quasi-parallel collisionless shocks are objects of considerable interest in space and astrophysics, ...
Theoretical basis and main results of the first successful large-scale, Laser-Plasma experiment “BUW...
We are performing scaled astrophysics experiments on Omega and on NIF. Laser driven counter-streamin...
Dense plasma expansion into a tenuous magnetized background plasma is prevalent in space and astroph...
Collisionless shocks are ubiquitous in the Universe and are held responsible for the production of n...
We have performed several thousand high-energy laser shots in the LAPD to investigate the dynamics o...
Laboratory astroplasma physics experiments advance both our astrophysics and plasma physics knowledg...
Collisionless shocks are ubiquitous in many space and astrophysical plasmas. However, since space sh...
We report the first evidence of a laboratory double layer (DL) collapsing in the presence of an inst...
The explosive expansion of a dense debris plasma cloud into relatively tenuous, magnetized, ambient ...
Magnetized plasma expansions from explosive phenomena often have characteristically large ratios of ...
Quasi-parallel collisionless shocks are objects of considerable interest in space and astrophysics, ...
Theoretical basis and main results of the first successful large-scale, Laser-Plasma experiment “BUW...
We are performing scaled astrophysics experiments on Omega and on NIF. Laser driven counter-streamin...
Dense plasma expansion into a tenuous magnetized background plasma is prevalent in space and astroph...
Collisionless shocks are ubiquitous in the Universe and are held responsible for the production of n...
We have performed several thousand high-energy laser shots in the LAPD to investigate the dynamics o...
Laboratory astroplasma physics experiments advance both our astrophysics and plasma physics knowledg...
Collisionless shocks are ubiquitous in many space and astrophysical plasmas. However, since space sh...
We report the first evidence of a laboratory double layer (DL) collapsing in the presence of an inst...