13 citations · 13 across the 4 of their papers we have counts for
7 papers · 1 filter
Whistler wave occurrence and the interaction with strahl electrons during the first encounter of Parker Solar Probe
V. K. Jagarlamudi, T. Dudok de Wit, C. Froment +16
We studied the properties and occurrence of narrow band whistler waves and their interaction with strahl electrons observed between 0.17 and 0.26 au during the first encounter of P…
Shock Drift Acceleration of Ions in an Interplanetary Shock Observed by MMS
E. L. M. Hanson, O. V. Agapitov, I. Y. Vasko +6
An interplanetary (IP) shock wave was recorded crossing the Magnetospheric Multiscale (MMS) constellation on 2018 January 8. Plasma measurements upstream of the shock indicate effi…
Switchbacks in the solar magnetic field: their evolution, their content, and their effects on the plasma, V2
F. S. Mozer1, O. V. Agapitov1, S. D. Bale1 +19
Switchbacks (rotations of the magnetic field) are observed on the Parker Solar Probe. Their evolution, content, and plasma effects are studied in this paper. The solar wind does no…
Time domain structures and dust in the solar vicinity: Parker Solar Probe observations
F. S. Mozer, O. V. Agapitov, S. D. Bale +9
On April 5, 2019, while the Parker Solar Probe was at its 35 solar radius perihelion, the data set collected at 293 samples/sec contained more than 10,000 examples of spiky electri…
Scattering of energetic electrons by heat-flux-driven whistlers in flares
G. T. Roberg-Clark, O. V. Agapitov, J. F. Drake +1
The scattering of electrons by heat-flux-driven whistler waves is explored with a particle-in-cell (PIC) simulation relevant to the transport of energetic electrons in flares. The…
Effects of equatorial chorus wave normal azimuthal distribution on wave propagation
H. Breuillard, D. Mendzhul, O. Agapitov
The non-ducted propagation characteristics of the VLF waves in the inner magnetosphere were studied with respect to their frequency, source localization, and initial wave normal an…