26–31 Jul 2026
Luskin Conference Center, UCLA
US/Pacific timezone

QPAD: Recent advances and modeling of HEP experiments

Not scheduled
20m
Luskin Conference Center, UCLA

Luskin Conference Center, UCLA

Speaker

Thamine Dalichaouch (University of California Los Angeles)

Description

QPAD [1] is a unique particle-in-cell (PIC) code that combines the quasi-3D algorithm [2] and quasi-static (QS) approximation to efficiently model plasma-based accelerators (PBAs). The quasi-3D algorithm decomposes the electromagnetic fields and plasma source terms into azimuthal Fourier harmonics on a cylindrical grid, thus reducing the algorithmic complexity to that of a 2D code while still resolving asymmetric 3D physics. In combination with the large time-steps permitted by the quasi-static algorithm, QPAD is orders of magnitude faster than conventional PIC codes and standard 3D QS codes. The code features an azimuthally decomposed ponderomotive guiding center (PGC) algorithm for modeling laser-plasma interactions and support for arbitrarily structured laser (ASTRL) pulses. Recent updates include support for the particle-in-cell modeling interface (PICMI) standard, openPMD standard, and a robust pusher for modeling highly nonlinear wakes. A simulation framework integrating QPAD and OSIRIS to model high brightness beam injection and acceleration in a single PBA stage is presented. Examples of recent QPAD simulations of hosing, beam loading, and staging in the electron arm of an LC are also shown. Comparisons with full-3D PIC codes are presented.

[1] F. Li et al., CPC, 261, 107784 (2021).
[2] A. F. Lifschitz et al., JCP, 228, 1803–1814 (2009).
This work is supported by DOE and NSF.

Working group WG3

Author

Thamine Dalichaouch (University of California Los Angeles)

Co-authors

Fei Li (Tsinghua University) Qianqian Su (Old Dominion University) Weiming An (Beijing Normal University) Jacob Pierce (University of California, Los Angeles) Elias Hansen (University of California, Los Angeles) Kyle Miller (Laboratory for Laser Energetics) Chaojie Zhang (University of California Los Angeles) Frank Tsung (University of California, Los Angeles) Viktor Decyk (University of California, Los Angeles) John Palastro (Laboratory for Laser Energetics) Warren Mori (University of California Los Angeles)

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