Search Results - "Vásconez, C L"

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  1. 1

    Dissipation measures in weakly collisional plasmas by Pezzi, O, Liang, H, Juno, J L, Cassak, P A, Vásconez, C L, Sorriso-Valvo, L, Perrone, D, Servidio, S, Roytershteyn, V, TenBarge, J M, Matthaeus, W H

    “…ABSTRACT The physical foundations of the dissipation of energy and the associated heating in weakly collisional plasmas are poorly understood. Here, we compare…”
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  2. 2

    REVISITING A CLASSIC: THE PARKER-MOFFATT PROBLEM by Pezzi, O., Parashar, T. N., Servidio, S., Valentini, F., Vásconez, C. L., Yang, Y., Malara, F., Matthaeus, W. H., Veltri, P.

    Published in The Astrophysical journal (10-01-2017)
    “…ABSTRACT The interaction of two colliding Alfvén wave packets is described here by means of magnetohydrodynamics (MHD) and hybrid kinetic numerical…”
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  3. 3

    From Alfvén waves to kinetic Alfvén waves in an inhomogeneous equilibrium structure by Pucci, F., Vásconez, C. L., Pezzi, O., Servidio, S., Valentini, F., Matthaeus, W. H., Malara, F.

    “…Kinetic Alfvén waves are believed to primary form fluctuations in a hydromagnetic turbulence at scales of the order of the ion inertial length. We study a…”
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  4. 4

    KINETIC ALFVÉN WAVE GENERATION BY LARGE-SCALE PHASE MIXING by Vásconez, C. L., Pucci, F., Valentini, F., Servidio, S., Matthaeus, W. H., Malara, F.

    Published in The Astrophysical journal (10-12-2015)
    “…ABSTRACT One view of the solar wind turbulence is that the observed highly anisotropic fluctuations at spatial scales near the proton inertial length dp may be…”
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  5. 5
  6. 6

    Dissipation measures in weakly-collisional plasmas by Pezzi, O, Liang, H, Juno, J. L, Cassak, P. A, Vasconez, C. L, Sorriso-Valvo, L, Perrone, D, Servidio, S, Roytershteyn, V, TenBarge, J. M, Matthaeus, W. H

    Published 26-06-2021
    “…Monthly Notices of the Royal Astronomical Society 505(4), 4857-4873 (2021) The physical foundations of the dissipation of energy and the associated heating in…”
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  7. 7

    Revisiting a classic: the Parker-Moffatt problem by Pezzi, O, Parashar, T. N, Servidio, S, Valentini, F, Vasconez, C. L, Yang, Y, Malara, F, Matthaeus, W. H, Veltri, P

    Published 24-11-2016
    “…The interaction of two colliding Alfv\'en wave packets is here described by means of magnetohydrodynamics (MHD) and hybrid kinetic numerical simulations. The…”
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  8. 8

    Sun flux variation due to the effects of orbiting planets. Case of study of a non-compact planetary system by Barbier, H, López, E. D, Tipán, B, Vásconez, C. L

    Published 16-05-2018
    “…We study the phase curves for the planets of our Solar System; which, is considered as a non-compact planetary system. We focus on modeling the small…”
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  9. 9

    Transition to kinetic turbulence at proton scales driven by large-amplitude Kinetic Alfv\`en fluctuations by Valentini, F, Vasconez, C. L, Pezzi, O, Servidio, S, Malara, F, Pucci, F

    Published 17-10-2016
    “…A&A 599, A8 (2017) Space plasmas are dominated by the presence of large-amplitude waves, large-scale inhomogeneities, kinetic effects and turbulence. Beside…”
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  10. 10

    Vlasov simulations of Kinetic Alfv\'en Waves at proton kinetic scales by Vasconez, C. L, Valentini, F, Camporeale, E, Veltri, P

    Published 02-09-2014
    “…Kinetic Alfv\'en waves represent an important subject in space plasma physics, since they are thought to play a crucial role in the development of the…”
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  11. 11

    Kinetic Alfv\'en waves generation by large-scale phase-mixing by Vasconez, C. L, Pucci, F, Valentini, F, Servidio, S, Matthaeus, W. H, Malara, F

    Published 22-07-2015
    “…One view of the solar-wind turbulence is that the observed highly anisotropic fluctuations at spatial scales near the proton inertial length $d_p$ may be…”
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    Journal Article
  12. 12

    Colliding Alfv\'enic wave packets in MHD, Hall and kinetic simulations by Pezzi, O, Parashar, T. N, Servidio, S, Valentini, F, Vasconez, C. L, Yang, Y, Malara, F, Matthaeus, W. H, Veltri, P

    Published 03-02-2017
    “…The analysis of the Parker-Moffatt problem, recently revisited in Pezzi et al. (2016), is here extended by including the Hall magnetohydrodynamics and two…”
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