Clustering of macroparticles in simulations of plasma wakefield acceleration and solutions to this problem
ID:11 View Protection:ATTENDEE Updated Time:2024-04-10 22:26:21 Hits:301 Oral Presentation

Start Time:Pending(Asia/Shanghai)

Duration:Pending

Session:No Session »

No files

Abstract
Simulations of plasma wakefield acceleration are challenging for many reasons, one of which is that the wave scale (about plasma skin depth) is much larger than the Debye length. Attempting to resolve both would make simulations prohibitively expensive. Therefore, grid steps far exceeding the Debye length are used, which compromises the accuracy of PIC simulations. While this inconsistency does not notably impact short-term processes spanning several wave periods, long-term simulations lead to clustering and unphysical heating of plasma electrons.
The latter undesirable effects can be avoided by slightly modifying the law of plasma particle motion, which is implemented in the newly developed 3d version of LCODE. The new feature enables much cleaner simulations of long-term wave evolution. In particular, when the numerical heating of plasma electrons is suppressed, the wake chaotization and premature transverse wavebreaking of a moderately nonlinear plasma wave disappear.
Keywords
plasma,wakefield acceleration,simulation
Speaker
Konstantin Lotov
Novosibirsk State University;Budker INP

Submission Author
Konstantin Lotov Novosibirsk State University;Budker INP
Ivan Kargapolov Novosibirsk State University;Budker INP
Nikita Okhotnikov Novosibirsk State University;Budker INP
Submit Comment
Verify Code Change Another
All Comments
Important Date
  • Conference Date

    May 13

    2024

    to

    May 17

    2024

  • Mar 31 2024

    Registration deadline

  • Apr 15 2024

    Abstract Submission Deadline

Sponsored By
National Key Laboratory of Shock wave and Detonation Physics
School of Physics, Zhejiang University
Pulsed Power Technology and Application Association of Chinese Nuclear Society
Contact Information