most citedEfficient Framework for Solving Plasma Waves with Arbitrary Distributions

6 citations · 8 across the 5 of their papers we have counts for

collaborators

5 papers

physics.plasm-ph2026

Sub-Second Collisionless Gyrokinetic Eigenvalue Solutions via Orbit-Invariant Decomposition

Anrui Luo, Jingyi Yu, Huasheng Xie +1

Fast analysis of microscopic drift-wave instabilities based on linear gyrokinetic simulations is desirable for modeling anomalous transport in fusion devices. In this work, we pres…

physics.plasm-ph2026

Minute-Scale High-Fidelity Gyrokinetic Simulations with Portability from Laptop to Supercomputer

Jian Bao, Huasheng Xie, Ming Yang +4

Global gyrokinetic particle simulations remain computationally expensive, as they demand both adequate marker statistics and three-dimensional field solvers. In this work, we prese…

physics.plasm-ph2026

Plasma Instabilities in Arbitrary Distributions: Comparison between ALPS and BO

Xudong Guo, Huasheng Xie, Kristopher G. Klein +3

Determining accurate wave dispersion relations is a central problem in plasma physics. Recent advances have enabled the numerical computation of linear dispersion relation in plasm…

physics.plasm-ph2025★ 2 cited

Developing a Linear Fluid Plasma Model with Accurate Kinetic Bernstein Waves: A First Step

Huasheng Xie

Kinetic models provide highly accurate descriptions of plasma waves but involve complex integrals that are computationally expensive to solve. To facilitate a fluid-like treatment…

physics.plasm-ph2025★ 6 cited

Efficient Framework for Solving Plasma Waves with Arbitrary Distributions

Huasheng Xie

Plasma, which constitutes 99\% of the visible matter in the universe, is characterized by a wide range of waves and instabilities that play a pivotal role in space physics, astroph…