Particle Scattering in Magnetized Plasmas and Diffusive Shock Acceleration at Perpendicular Interplanetary Shock Waves

Physics

Scientific paper

Rate now

  [ 0.00 ] – not rated yet Voters 0   Comments 0

Details

Turbulence, Diffusion, Magnetic Fields, Shock Waves, Integral Equations, Turbulence, Convection, Turbulence, And Diffusion, Electric And Magnetic Fields, Solar Magnetism, Planetary Bow Shocks, Interplanetary Shocks, Integral Equations

Scientific paper

Particle scattering in pure magnetic turbulence is investigated by combining the Newton-Lorentz equation with the well-established nonlinear guiding center theory. Cross field diffusion coefficients are calculated as well as certain limits in particle energy and turbulence strength. In addition to the well-known nonlinear results we find a new contribution which describes particle scattering away from a single field line. In particular, perpendicular diffusion can be described as a superposition of scattering due to wandering magnetic field lines and scattering away from a single field line. As an example, the new results are used to calculate the maximum energy of protons accelerated at perpendicular interplanetary shock waves driven by a coronal mass ejection.

No associations

LandOfFree

Say what you really think

Search LandOfFree.com for scientists and scientific papers. Rate them and share your experience with other people.

Rating

Particle Scattering in Magnetized Plasmas and Diffusive Shock Acceleration at Perpendicular Interplanetary Shock Waves does not yet have a rating. At this time, there are no reviews or comments for this scientific paper.

If you have personal experience with Particle Scattering in Magnetized Plasmas and Diffusive Shock Acceleration at Perpendicular Interplanetary Shock Waves, we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and Particle Scattering in Magnetized Plasmas and Diffusive Shock Acceleration at Perpendicular Interplanetary Shock Waves will most certainly appreciate the feedback.

Rate now

     

Profile ID: LFWR-SCP-O-1078241

  Search
All data on this website is collected from public sources. Our data reflects the most accurate information available at the time of publication.