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  1. link.aps.org

    The shape of the anisotropic velocity distribution function, beyond the realm of strict Maxwellians can play a significant role in determining the evolution of the Weibel instability dictating the dynamics of self-generated magnetic fields. For non-Maxwellian distribution functions, we show that the direction of the maximum growth rate wave vector changes with shape. We investigate different ...
    Author:T. Silva, B. Afeyan, L. O. SilvaPublished:2021
    • The Weibel instability beyond Weibel's Bi-Maxwellian Anisotropy

      Supplemental Material for \The Weibel instability beyond Weibel's Bi-Maxwellian Anisotropy" T. Silva, 1,B. Afeyan,2, yand L. O. Silva z 1GoLP/Instituto de Plasmas e Fus~ao Nuclear, Instituto Superior T ecnico, Universidade de Lisboa, 1049-001 Lisbon, Portugal 2Polymath Research Inc., 94566 Pleasanton, CA, USA (Dated: August 13, 2021)

  2. link.aps.org

    mate growth rates for the Weibel [18] and other kinetic instabilities [19-22]. In this work, we extend the Weibel instability analy-sis by exploring previously unidentified and unexpected features. Our results enable a deeper fundamental un-derstanding of the instability mechanism. To go beyond standard theory, we consider a more generic ...
  3. The shape of the anisotropic velocity distribution function, beyond the realm of strict Maxwellians can play a significant role in determining the evolution of the Weibel instability dictating the dynamics of self-generated magnetic fields. For non-Maxwellian distribution functions, we show that the direction of the maximum growth rate wavevector changes with shape. We investigate different ...
    Author:Thales Silva, Bedros Afeyan, Luis O. SilvaPublished:2021
  4. pubmed.ncbi.nlm.nih.gov

    The shape of the anisotropic velocity distribution function, beyond the realm of strict Maxwellians can play a significant role in determining the evolution of the Weibel instability dictating the dynamics of self-generated magnetic fields. For non-Maxwellian distribution functions, we show that the …
  5. for the Weibel [22] and other kinetic instabilities [23-26]. In this Letter, we extend the treatment of the Weibel instability by exploring previously unidentified and un-expected features. Our results enable a deeper funda-mental understanding of the instability mechanism. To go beyond standard theory, we consider a more generic
    Author:Thales Silva, Bedros Afeyan, Luis O. SilvaPublished:2021
  6. ui.adsabs.harvard.edu

    The shape of the anisotropic velocity distribution function, beyond the realm of strict Maxwellians can play a significant role in determining the evolution of the Weibel instability dictating the dynamics of self-generated magnetic fields. For non-Maxwellian distribution functions, we show that the direction of the maximum growth rate wave vector changes with shape. We investigate different ...
  7. journals.aps.org

    Supplemental Material for \The Weibel instability beyond Weibel's Bi-Maxwellian Anisotropy" T. Silva, 1,B. Afeyan,2, yand L. O. Silva z 1GoLP/Instituto de Plasmas e Fus~ao Nuclear, Instituto Superior T ecnico, Universidade de Lisboa, 1049-001 Lisbon, Portugal 2Polymath Research Inc., 94566 Pleasanton, CA, USA (Dated: August 13, 2021)
  8. semanticscholar.org

    This work investigates different laser-plasma interaction model distributions which show that their Weibel generated magnetic fields may require closer scrutiny beyond the second moment (temperature) anisotropy ratio characterization. The shape of the anisotropic velocity distribution function, beyond the realm of strict Maxwellians can play a significant role in determining the evolution of ...
  9. researchgate.net

    The shape of the anisotropic velocity distribution function, beyond the realm of strict Maxwellians can play a significant role in determining the evolution of the Weibel instability dictating the ...
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