Enhancement of self-similar growth in multimode ablative Rayleigh–Taylor instability by self-generated magnetic fields
ID:95 View Protection:ATTENDEE Updated Time:2026-04-23 16:24:12 Hits:36 Oral Presentation

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Abstract
The self-generated magnetic field coupled with the growth of multimode ablative Rayleigh–Taylor instability (ARTI) is investigated by numerical simulations with Nernst effects, resistivity and magnetized heat conduction taken into account. It is found that intense magnetic fields about 1 kT can be generated in multimode ARTI via the Biermann-battery source and the Nernst amplification. The enhancement of the self-similar growing coefficient \(\alpha_b\) caused by self-generated magnetic fields is attributed to the reinforcement of the vorticity inside the bubbles. It is also found that \(\alpha_b\) is enhanced more significantly in cases where the perturbation spectra contain more short-wavelength components. The formula for the dependence of \(\alpha_b\) on the initial perturbation amplitude proposed in Zhang et al (2018 Phys. Rev. Lett. 121 185002) remains applicable, but requires a modified coefficient to account for the attenuation of ablative stabilization due to self-generated magnetic fields.
 
Keywords
ablative Rayleigh–Taylor instability,self-generated magnetic field,Magnetized heat flux,self-similar growth
Speaker
德华 张
博士后研究员 中国科学技术大学

Submission Author
德华 张 中国科学技术大学
锐 闫 中国科学技术大学
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Important Date
  • May 12

    2026

    Conference Date

  • Apr 15 2026

    Draft paper submission deadline

  • May 12 2026

    Registration deadline

Sponsored By
National Key Laboratory of Plasma Physics, Laser Fusion Research Center, China Academy of Engineering Physics
Xiamen University