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Showing 1 to 4 of 4 for “"Charged particle dynamics"”.

  1. Collective charged particle dynamics in relativistically transparent laser-plasma interactions

    … is an important step towards optical control of charged particle dynamics in laser driven dense plasma sources and in its potential applications; including ion and radiation source development.The experimental and numerical investigations exploring the onset and the underpinning physics of the …

    strathclyde Repository record for Collective charged particle dynamics in relativistically transparent laser-plasma interactions (opens in a new tab)

  2. New relativistic solutions for classical charges in an electromagnetic field.

    … formalism. The eigenspinor in classical electrodynamics arises as an element of bilinear Lorentz transformations in the framework of the Clifford algebra Cℓ3. The paravector subspace of the algebra, a four-dimensional space defined to contain scalars and spatial vectors, shares the metric …

    windsor Repository record for New relativistic solutions for classical charges in an electromagnetic field. (opens in a new tab)

  3. Inverse problems in elliptic charged-particle beams

    … for the design of elliptic cross-section charged-particle beam formation and transport systems. An effective mathematical formalism for describing accelerating elliptic cross-section beams is developed in which the particle distribution function for an elliptic beam is associated with a …

    mit Repository record for Inverse problems in elliptic charged-particle beams (opens in a new tab)

  4. A Computational Framework for Dimensionally Reduced Particle Dynamics in Magnetic Nozzle Fields: An Adiabatic Invariant Approach

    … a dimensional reduction strategy for modeling charged particle trajectories in electromagnetic fields representative of magnetic nozzle expansion regions. By employing Julia’s DifferentialEquations.jl and Python’s scientific libraries, particle trajectories are integrated with high precision …

    sask Repository record for A Computational Framework for Dimensionally Reduced Particle Dynamics in Magnetic Nozzle Fields: An Adiabatic Invariant Approach (opens in a new tab)