We report the measurements of electrostatic field structures associated with an electrostatic shock formed in laser-produced counter-streaming plasmas with proton imaging. The thickness of the electrostatic structure is estimated from proton images with different proton kinetic energies from 4.7 MeV to 10.7 MeV. The width of the transition region is characterized by electron scale length in the laser-produced plasma, suggesting that the field structure is formed due to a collisionless electrostatic shock.ISSN:1742-6588ISSN:1742-659
One of the most exciting results recently obtained in the ultraintense interaction research area is ...
Shocks are essential components in astrophysical systems and inertial confinement fusion (ICF). In r...
Laser driven proton beams have been used to diagnose transient fields and density perturbations in l...
We report the measurements of electrostatic field structures associated with an electrostatic shock ...
The proton probing technique is used to image quasi-static electromagnetic fields present in the wak...
Until recently the interpretation of the dynamics and evolution of laser-produced plasmas was based ...
The proton probing technique is used to image quasi-static electromagnetic fields present in the wak...
Collisionless shocks are often observed in fast-moving astrophysical plasmas, formed by non-classica...
International audienceA method for obtaining quantitative information about electric field and charg...
Due to their particular properties (small source size, low divergence, short duration, large number ...
Due to their particular properties (low emittance, short duration, and large number density), the be...
Due to their particular properties, the beams of the multi-MeV protons generated during the interact...
We present a method for evaluating the properties of electrostatic shock in laser-produced plasmas b...
The interaction of ultra-intense laser pulses >1018W/cm2 with thin foils drives the acceleration of ...
Electrostatic (E) fields associated with the interaction of a well-controlled, high-power, nanosecon...
One of the most exciting results recently obtained in the ultraintense interaction research area is ...
Shocks are essential components in astrophysical systems and inertial confinement fusion (ICF). In r...
Laser driven proton beams have been used to diagnose transient fields and density perturbations in l...
We report the measurements of electrostatic field structures associated with an electrostatic shock ...
The proton probing technique is used to image quasi-static electromagnetic fields present in the wak...
Until recently the interpretation of the dynamics and evolution of laser-produced plasmas was based ...
The proton probing technique is used to image quasi-static electromagnetic fields present in the wak...
Collisionless shocks are often observed in fast-moving astrophysical plasmas, formed by non-classica...
International audienceA method for obtaining quantitative information about electric field and charg...
Due to their particular properties (small source size, low divergence, short duration, large number ...
Due to their particular properties (low emittance, short duration, and large number density), the be...
Due to their particular properties, the beams of the multi-MeV protons generated during the interact...
We present a method for evaluating the properties of electrostatic shock in laser-produced plasmas b...
The interaction of ultra-intense laser pulses >1018W/cm2 with thin foils drives the acceleration of ...
Electrostatic (E) fields associated with the interaction of a well-controlled, high-power, nanosecon...
One of the most exciting results recently obtained in the ultraintense interaction research area is ...
Shocks are essential components in astrophysical systems and inertial confinement fusion (ICF). In r...
Laser driven proton beams have been used to diagnose transient fields and density perturbations in l...