Stochastic Acceleration of3He and4He in Solar Flares by Parallel‐propagating Plasma Waves: General Results
- 1 January 2006
- journal article
- Published by American Astronomical Society in The Astrophysical Journal
- Vol. 636 (1) , 462-474
- https://doi.org/10.1086/497883
Abstract
We study the acceleration in solar flares of $^3$He and $^4$He from a thermal background by parallel propagating plasma waves with a general broken power-law spectrum that takes into account the turbulence generation processes at large scales and the thermal damping effects at small scales. The exact dispersion relation for a cold plasma is used to describe the relevant wave modes. Because low-energy $\alpha$-particles only interact with small scale waves in the $^4$He-cyclotron branch, where the wave frequencies are below the $\alpha$-particle gyro-frequency, their pitch angle averaged acceleration time is at least one order of magnitude longer than that of $^3$He ions, which mostly resonate with relatively higher frequency waves in the proton-cyclotron (PC) branch. The $\alpha$-particle acceleration rate starts to approach that of $^3$He beyond a few tens of keV nucleon$^{-1}$, where $\alpha$-particles can also interact with long wavelength waves in the PC branch. However, the $^4$He acceleration rate is always smaller than that of $^3$He. Consequently, the acceleration of $^4$He is suppressed significantly at low energies, and the spectrum of the accelerated $\alpha$-particles is always softer than that of $^3$He. The model gives reasonable account of the observed low-energy $^3$He and $^4$He fluxes and spectra in the impulsive solar energetic particle events observed with the {\it Advanced Composition Explorer}. We explore the model parameter space to show how observations may be used to constrain the model
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This publication has 49 references indexed in Scilit:
- The Anisotropy of Electron Magnetohydrodynamic TurbulenceThe Astrophysical Journal, 2004
- Spectral Properties of Heavy Ions Associated with the Passage of Interplanetary Shocks at 1 AUThe Astrophysical Journal, 2004
- Compressible magnetohydrodynamic turbulence: mode coupling, scaling relations, anisotropy, viscosity-damped regime and astrophysical implicationsMonthly Notices of the Royal Astronomical Society, 2003
- Solar Particle Transport in a Dynamical Quasi‐linear TheoryThe Astrophysical Journal, 2003
- Evidence for a Suprathermal Seed Population of Heavy Ions Accelerated by Interplanetary Shocks near 1 AUThe Astrophysical Journal, 2003
- MHD Turbulence: Scaling Laws and Astrophysical ImplicationsPublished by Springer Nature ,2003
- Acceleration of [TSUP]3[/TSUP]H[CLC]e[/CLC] Nuclei at Interplanetary ShocksThe Astrophysical Journal, 2001
- The dynamics of charged particles in turbulent astrophysical plasmasThe Astrophysical Journal, 1994
- Proton and electron mean free paths: The Palmer consensus revisitedThe Astrophysical Journal, 1994
- Dispersion surfacesJournal of Plasma Physics, 1985