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  1. suli.pppl.gov

    Kinetic simulation of magnetic field generation via the Biermann Battery effect for laser-driven HED experimental conditions Jill Peery1, Jack Matteucci2, Will Fox2, Derek Schaeffer2, Kirill Lezhnin2 1 Willamette University 2Princeton Plasma Physics Laboratory This project hopes to characterize the magnetic field generated by the Biermann Battery
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  3. iopscience.iop.org

    Intense magnetic fields generated in laser-solid interaction laboratory experiments [1-5], the seed field required for the generation of astrophysical magnetic fields [6, 7], and experiments that mimic astrophysical events [8-10] have all been attributed to the Biermann battery [].The Biermann battery mechanism generates magnetic fields due to misaligned temperature and density gradients.
  4. ui.adsabs.harvard.edu

    Recent experiments with intense lasers are probing the dynamics of self-generated large scale magnetic fields with unprecedented detail. In these scenarios the Biermann battery effect is critical to understand the field dynamics. Similar dynamics play an essential role in astrophysical magnetic field generation. In our previous work, particle-in-cell simulations were used to investigate the ...
    Author:Kevin Schoeffler, Nuno Loureiro, Luis SilvaPublished:2016
  5. iopscience.iop.org

    Magnetic field generation and diffusion by a laser-produced blast wave propagating in non-homogenous plasma A Marocchino, S Atzeni and A Schiavi-This content was downloaded from IP address 157.55.39.6 on 24/11/2023 at 15:40. General kinetic solution for the Biermann battery with an associated pressure anisotropy generation K M Schoeffler and L ...
  6. pubs.aip.org

    Jul 5, 2023Kinetic simulations and experiments have shown that the rate of magnetic-field generation is lower than Biermann when the electron mean free path becomes comparable to or greater than the temperature gradient scale length, known as the nonlocal regime. ... Citing articles via. Web Of Science (6) Google Scholar. CrossRef (2) Submit your article ...
  7. pubs.aip.org

    Strong, MG-scale magnetic fields can be generated in expanding laser plasmas by the Biermann battery effect (e.g., Refs. 3-6), or by kinetic instabilities such as Weibel instability 7,8 and Rayleigh-Taylor instability. 9,10 These processes all have astrophysical analogues, allowing experimental investigation of the generation of magnetic fields and subsequent dynamics of magnetized plasmas ...
  8. pubs.aip.org

    With gradient scales L, large-scale magnetic fields are generated by the Biermann battery mechanism with plasma β ∼ 1, as long as L is comparable to the ion inertial length d i. For larger system sizes, L / d e > 100 (where d e is the electron inertial length), the Weibel instability generates magnetic fields of similar magnitude but with ...
  9. semanticscholar.org

    Corpus ID: 126382228; Kinetic solution for the generation of magnetic fields via the Biermann Battery @article{Schoeffler2016KineticSF, title={Kinetic solution for the generation of magnetic fields via the Biermann Battery}, author={K M Schoeffler and Nuno F. Loureiro and Lu{\'i}s Sim{\~o}es da Silva}, journal={Bulletin of the American Physical Society}, year={2016}, url={https://api ...
  10. link.aps.org

    This work explores how collisionality can affect magnetic field generation by the Biermann battery. While in marginally collisional systems the Nernst effect enhances the magnetic fields, as the collisions decrease, kinetic effects allow for even stronger Weibel filaments to develop. ... and the generation of a magnetic field via the Biermann ...
  11. dataspace.princeton.edu

    This work focuses on magnetic field generation via the Biermann battery effect and the Weibel instability, as well as magnetic reconnection; our findings have significant implications for recent and on-going HED magnetic reconnection experiments as well as more broadly for astrophysical plasmas and inertial confinement fusion.

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