Identification of coupled Landau and anomalous resonances in space plasmas
arXiv:2405.16065 · doi:10.1103/PhysRevLett.133.035201
Abstract
Wave-particle resonance, a ubiquitous process in the plasma universe, occurs when resonant particles observe a constant wave phase to enable sustained energy transfer. Here, we present spacecraft observations of simultaneous Landau and anomalous resonances between oblique whistler waves and the same group of protons, which are evidenced, respectively, by phase-space rings in parallel-velocity spectra and phase-bunched distributions in gyro-phase spectra. Our results indicate the coupling between Landau and anomalous resonances via the overlapping of the resonance islands.
13 pages, 4 figures and supplementary material
References in corpus (5)
- Evidence for Electron Landau Damping in Space Plasma Turbulence
- The In Situ Signature of Cyclotron Resonant Heating
- Diagnosing collisionless energy transfer using field-particle correlations: Alfven-Ion Cyclotron Turbulence
- The Importance of Electron Landau Damping for the Dissipation of Turbulent Energy in Terrestrial Magnetosheath Plasma
- Resonant whistler-electron interactions: MMS observations vs. test-particle simulation