Relativistic electron generation in interactions of a 30 TW laser pulse with a thin foil target.

Energy and angular distributions of the fast outgoing electron beam induced by the interaction of a 1 J, 30 fs, 2 x 10(19) W/cm(2), 10 Hz laser with a thin foil target are characterized by electron energy spectroscopy and photonuclear reactions. We have investigated the effect of the target thickness and the intensity contrast ratio level on the electron production. Using a 6-microm polyethylene target, up to 4 x 10(8) electrons with energies between 5 and 60 MeV were produced per laser pulse and converted to gamma rays by bremsstrahlung in a Ta secondary target. The rates of photofission of U as well as photonuclear reactions in Cu, Au, and C samples have been measured. In optimal focusing conditions, about 0.06% of the laser energy has been converted to outgoing electrons with energies above 5 MeV. Such electrons leave the target in the laser direction with an opening angle of 2.5 degrees.

[1]  H Schwoerer,et al.  Mev X rays and photoneutrons from femtosecond laser-produced plasmas. , 2001, Physical review letters.

[2]  F. Amiranoff,et al.  Suprathermal Electron Generation and Channel Formation by an Ultrarelativistic Laser Pulse in an Underdense Preformed Plasma , 1997 .

[3]  P. G. Thirolf,et al.  Multi-MeV Electron Beam Generation by Direct Laser Acceleration in High-Density Plasma Channels , 1999 .

[4]  W. Stephens,et al.  $sup 12$C($gamma$,N)$sup 11$C GIANT RESONANCE WITH GAMMA RAYS , 1966 .

[5]  Antoine Rousse,et al.  Experimental study of the interaction of subpicosecond laser pulses with solid targets of varying initial scale lengths , 1997 .

[6]  Zheng-Ming Sheng,et al.  Particle acceleration in relativistic laser channels , 1999 .

[7]  Tabak,et al.  Absorption of ultra-intense laser pulses. , 1992, Physical review letters.

[8]  Clark,et al.  Effect of the plasma density scale length on the direction of fast electrons in relativistic laser-solid interactions , 2000, Physical review letters.

[9]  Phillips,et al.  Photonuclear fission from high energy electrons from ultraintense laser-solid interactions , 2000, Physical review letters.

[10]  A. Leprêtre,et al.  A study of the photofission and photoneutron processes in the giant dipole resonance of 232Th, 238U and 237Np , 1973 .

[11]  A. Leprêtre,et al.  Photoneutron cross sections of 208Pb and 197Au , 1970 .

[12]  G. Cheriaux,et al.  A laser system producing 5×1019 W/cm2 at 10 Hz , 1997 .

[13]  V. Tikhonchuk Interaction of a beam of fast electrons with solids , 2002 .

[14]  Martin Richardson,et al.  Thermal transport measurements in six-beam, ultraviolet irradiation of spherical targets , 1985 .

[15]  J. Gauthier,et al.  Hot-electron distribution functions in a subpicosecond laser interaction with solid targets of varying initial gradient scale lengths. , 1999, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.

[16]  Michael D. Perry,et al.  Observations of MeV electrons and scattered light from intense subpicosecond laser-plasma interactions , 1993, Photonics West - Lasers and Applications in Science and Engineering.

[17]  T. Tajima,et al.  Laser Electron Accelerator , 1979 .

[18]  K. Witte,et al.  Generation of MeV electrons and positrons with femtosecond pulses from a table-top laser system , 2002 .

[19]  F. Amiranoff,et al.  Characterization of electron beams produced by ultrashort (30 fs) laser pulses , 2001 .

[20]  Edward B. Clark,et al.  Energetic heavy-Ion and proton generation from ultraintense laser-plasma interactions with solids , 2000, Physical review letters.

[21]  K. Witte,et al.  MeV γ-ray yield from solid targets irradiated with fs-laser pulses , 1998 .

[22]  Miquel,et al.  Experimental Confirmation of Ponderomotive-Force Electrons Produced by an Ultrarelativistic Laser Pulse on a Solid Target. , 1996, Physical review letters.

[23]  Clark,et al.  Photonuclear physics when a multiterawatt laser pulse interacts with solid targets , 2000, Physical review letters.

[24]  Justin S. Wark,et al.  Observation of a highly directional γ-ray beam from ultrashort, ultraintense laser pulse interactions with solids , 1999 .

[25]  G. Bonnaud,et al.  NONLINEAR ELECTRON HEATING IN ULTRAHIGH-INTENSITY-LASER-PLASMA INTERACTION , 1997 .

[26]  Michael D. Perry,et al.  Experimental Measurements of Hot Electrons Generated by Ultraintense ( > 10 19 W / cm 2 ) Laser-Plasma Interactions on Solid-Density Targets , 1998 .

[27]  A. E. Dangor,et al.  Electron acceleration from the breaking of relativistic plasma waves , 1995, Nature.

[28]  B. MacGowan,et al.  Evidence for large heat fluxes from the mass ablation rate of laser‐irradiated spherical targets , 1982 .

[29]  T. C. Sangster,et al.  Intense electron and proton beams from PetaWatt laser–matter interactions , 2000 .