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Details

Autor(en) / Beteiligte
Titel
The Acceleration of Electrons to High Energies Over the Jovian Polar Cap via Whistler Mode Wave‐Particle Interactions
Ist Teil von
  • Journal of geophysical research. Space physics, 2018-09, Vol.123 (9), p.7523-7533
Ort / Verlag
Washington: Blackwell Publishing Ltd
Erscheinungsjahr
2018
Link zum Volltext
Quelle
Wiley Online Library Journals Frontfile Complete
Beschreibungen/Notizen
  • Upward traveling electrons with energies from tens of kiloelectron volts to several megaelectron volts have been observed over the Jovian polar regions in association with intense upward propagating whistler mode waves. The electrons have a power law‐like energy distribution, indicative of a stochastic acceleration process. The energy flux of the upward propagating whistler mode waves is comparable to and strongly correlated with the energy flux of the upward traveling energetic electrons, suggesting that the whistler mode waves may be accelerating the electrons. We propose that a downward field‐aligned current over the polar cap generates strong downward parallel electric fields and associated upward electron beams in the low‐density regions of Jupiter's upper ionosphere, a mechanism similar to the formation of inverted‐Vs in Earth's auroral regions. At Jupiter, the upward‐traveling electron beams produce intense upward propagating whistler mode emissions over a broad frequency range, similar to upward propagating auroral hiss at Earth. As the whistler mode waves propagate upward out of the inverted‐V source region, the waves are absorbed by the plasma, thereby accelerating the electrons. We attribute the stochastic power law‐like energy spectrum of the accelerated electrons to the development of Hamiltonian chaos (velocity space diffusion), the signature of which is indicated by the occurrence of spiky soliton‐like variations in the whistler mode electric fields. Acceleration to high energies may be facilitated by the rapid increase in the phase velocity of the whistler mode waves with increasing altitude, which could accelerate some of the electrons trapped in the wavefield to very high relativistic energies. Key Points Upgoing energetic electrons with power law‐like spectrums and strong upgoing whistler mode waves are observed over the Jovian polar cap The upgoing broadband whistler mode waves are generated by an electron beam instability at low altitudes in the upper ionosphere The upgoing electrons are stochastically accelerated by the broadband whistler mode waves via the development of Hamiltonian chaos
Sprache
Englisch
Identifikatoren
ISSN: 2169-9380
eISSN: 2169-9402
DOI: 10.1029/2018JA025797
Titel-ID: cdi_crossref_primary_10_1029_2018JA025797

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