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Association of intermittency with electron heating in the near-Sun solar wind

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arxiv 2206.10084 v1 pith:2NXEVWZS submitted 2022-06-21 astro-ph.SR physics.plasm-phphysics.space-ph

Association of intermittency with electron heating in the near-Sun solar wind

classification astro-ph.SR physics.plasm-phphysics.space-ph
keywords heatingnearstructuresenvironmentnear-sunsolarassociationcoherent
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Several studies in the near-Earth environment show that intermittent structures are important sites of energy dissipation and particle energization. Recent Parker Solar Probe (PSP) data, sampled in the near-Sun environment, have shown that proton heating is concentrated near coherent structures, suggesting local heating of protons by turbulent cascade in this region. However, whether electrons exhibit similar behavior in the near-Sun environment is not clear. Here, we address this question using PSP data collected near the Sun during the first seven orbits. We use the partial variance of increments (PVI) technique to identify coherent structures. We find that electron temperature is preferentially enhanced near strong discontinuities, although the association is somewhat weaker than that with protons. Our results provide strong support for inhomogeneous heating of electrons in the "young" solar wind, associated with dissipation of turbulent fluctuations near intermittent structures.

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