[go: up one dir, main page]

Goers et al., 2015 - Google Patents

MeV electron acceleration by sub-terawatt laser pulses in near critical density plasmas

Goers et al., 2015

Document ID
4327786701984734946
Author
Goers A
Hine G
Feder L
Miao B
Salehi F
Milchberg H
Publication year
Publication venue
Bulletin of the American Physical Society

External Links

Snippet

APS -57th Annual Meeting of the APS Division of Plasma Physics - Event - MeV electron acceleration by sub-terawatt laser pulses in near critical density plasmas American Physical Society American Physical Society Sites|APS|Journals|Physics APS Meetings Home Bulletin of …
Continue reading at meetings.aps.org (other versions)

Similar Documents

Publication Publication Date Title
Goers et al. MeV electron acceleration by sub-terawatt laser pulses in near critical density plasmas
Pi et al. Intense Laser Acceleration of Electrons in Highly-Charged Ions to GeV Energies
Xu et al. Laser-driven ultrafast multi-MeV gamma-ray beam generation
Simonet et al. Ultrafast electron cooling in an expanding ultracold micro-plasma
Solodov et al. Modeling laser-plasma interactions at direct-drive ignition-relevant plasma conditions at the National Ignition Facility
Pandit et al. Effects of Soft-Core Potentials and Coulombic Potentials on Bremsstrahlung Radiation during Laser Matter Interaction
Solodov et al. Laser-Plasma Interaction Experiments at Direct-Drive Ignition-Relevant Plasma Conditions at the National Ignition Facility
Robinson Radiation Pressure Acceleration of Ions
Guenot et al. Wakefield-acceleration of relativistic electrons with few-cycle laser pulses at kHz-repetition-rate
Yu et al. Heavy ion acceleration driven by the Interaction between ultraintense Laser pulse and sub-micron foils
Kojima et al. Optimization of Cone Wall Thickness to Reduce High Energy Electron Generation for Fast-Ignition Scheme
Arefiev et al. Gamma-ray emission enhanced by direct laser acceleration in a laser-driven magnetic field
Solodov et al. Modeling of Two-Plasmon-Decay Experiments at Polar-Direct-Drive Ignition-Relevant Plasma Conditions at the National Ignition Facility
Yu et al. Hole-boring radiation pressure proton acceleration at high intensity in near-critical density targets
Jiao et al. Neutron source from laser plasma acceleration
He et al. Ultrafast probing of transient electric fields from optical field ionized plasmas using picosecond electron deflectometry
Baeva Novel zero vector potential mechanism of absorption in strongly relativistic plasmas
Marinak et al. Improved inline model for Raman backscatter in HYDRA
Jansen et al. Gamma-ray generation and pair production from extreme laser-driven magnetic fields
Lemos et al. Forward directed x-ray from source produced by relativistic electrons from a Self-Modulated Laser Wakefield Accelerator
Sahai Relativistically Induced Transparency Acceleration (RITA)-laser-plasma accelerated quasi-monoenergetic GeV ion-beams with existing lasers?
Craxton et al. Beam-Pointing Designs for Exploding-Pusher Proton and X-Ray Backlighting Targets at the National Ignition Facility
Stoeckl et al. Spectroscopy of Neutrons Generated Through Nuclear Reactions with Light Ions in Short-Pulse Laser-Interaction Experiments
Schumaker et al. High-brightness, high-energy radiation generation from non-linear Thomson scattering of laser wakefield accelerated electrons
Marini et al. Surface-Wave Excitation and Electron Acceleration at Ultra-High-Intensity