DOE PAGES title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: Inverse bremsstrahlung absorption rate for super-Gaussian electron distribution functions including plasma screening

Journal Article · · Physical Review. E

Here we provide analytic expressions for the effective Coulomb logarithm for inverse bremsstrahlung absorption which predict significant corrections to the Langdon effect and overall absorption rate compared to previous estimates. The calculation of the collisional absorption rate of laser energy in a plasma by the inverse bremsstrahlung mechanism usually makes the approximation of a constant Coulomb logarithm. We dispense with this approximation and instead take into account the velocity dependence of the Coulomb logarithm, leading to a more accurate expression for the absorption rate valid in both classical and quantum conditions. In contrast to previous work, the laser intensity enters into the Coulomb logarithm. In most laser-plasma interactions the electron distribution function is super-Gaussian [Langdon, Phys. Rev. Lett. 44, 575 (1980)], and we find the absorption rate under these conditions is increased by as much as ≈ 30% compared to previous estimates at low density. In many cases of interest the correction to Langdon's predicted reduction in absorption is large; for example at Z = 6 and Te = 400 eV the Langdon prediction for the absorption is in error by a factor of ≈ 2. However, we also account for the additional effect of plasma screening, which predicts a reduction in absorption by a similar amount (up to ≈ 30%). These two effects compete to determine the overall absorption, which may be increased or decreased, depending on the conditions. The corrections can be incorporated into radiation-hydrodynamics simulation codes by replacing the familiar Coulomb logarithm with an analytic expression which depends on the super-Gaussian order “M” and the screening length.

Research Organization:
Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)
Sponsoring Organization:
USDOE; USDOE National Nuclear Security Administration (NNSA)
Grant/Contract Number:
AC52-07NA27344
OSTI ID:
2345131
Report Number(s):
LLNL-JRNL-847776; 1070050
Journal Information:
Physical Review. E, Journal Name: Physical Review. E Journal Issue: 5 Vol. 109; ISSN 2470-0045
Publisher:
American Physical Society (APS)Copyright Statement
Country of Publication:
United States
Language:
English

References (19)

Computation of free-free Gaunt factors and conductive opacities in hot matter journal October 1979
High-Frequency Conductivity and the Emission and Absorption Coefficients of a Fully Ionized Plasma journal January 1962
Transport Coefficients Determined Using the Shielded Coulomb Potential journal January 1959
An electron conductivity model for dense plasmas journal January 1984
Interaction of Intense Optical Radiation with free Electrons (Nonrelativistic Case) journal April 1973
Electron Radiative Transitions in a Coulomb Field. journal May 1961
Inverse bremsstrahlung absorption in large radiation fields during binary collisions-classical theory journal April 1972
Non-Maxwellian electron distributions and continuum X-ray emission in inverse Bremsstrahlung heated plasmas journal November 1988
Collisional absorption in strong laser fields journal January 2005
‘‘Coulomb logarithm’’ for inverse-bremsstrahlung laser absorption journal December 1987
Testing thermal conductivity models with equilibrium molecular dynamics simulations of the one-component plasma journal October 2019
Time-dependent electron-ion collision frequency at arbitrary laser intensity-temperature ratio journal December 2000
Dense plasma temperature equilibration in the binary collision approximation journal March 2002
Molecular-dynamic calculation of the inverse-bremsstrahlung heating of non-weakly-coupled plasmas journal November 2004
Collisional absorption of dense plasmas in strong laser fields: Quantum statistical results and simulation journal May 2005
Ionic transport in high-energy-density matter journal April 2016
Measurements of Non-Maxwellian Electron Distribution Functions and Their Effect on Laser Heating journal June 2021
Inverse Bremsstrahlung Absorption journal April 2023
Nonlinear Inverse Bremsstrahlung and Heated-Electron Distributions journal March 1980