activity
20242026
collaborators

5 papers

physics.plasm-ph2026

Collisionless Bulk Electron Heating in Resonant Low-Voltage Capacitively Coupled Plasmas

Sarveshwar Sharma, Igor D. Kaganovich, Animesh Kuley +3

We investigate collisionless power absorption in resonant, lowpressure capacitively coupled plasmas (CCPs). In these radio-frequency (RF) discharges, the sheath capacitance almo…

physics.plasm-ph2026

Ion-neutral and neutral-neutral scattering in argon at KeV energies and implications for high-aspect-ratio etching

Alexander V. Khrabrov, Igor D. Kaganovich

In this study, we report a physical model and a Monte Carlo simulation scheme developed to predict the angular distributions of energetic argon atoms and ions as an ion beam passes…

physics.plasm-ph2025

Particle-In-Cell Informed Kinetic Modeling of Nonlinear Skin Effects in Low-Frequency Inductively Coupled Plasmas

Haomin Sun, Jian Chen, Alexander Khrabrov +4

We perform extensive 2D Particle-In-Cell (PIC) electromagnetic simulations of low pressure Inductively Coupled Plasma (ICP) discharges with various coil current and driving frequen…

physics.plasm-ph2025

Nonlinear skin effect regime when a radio frequency electromagnetic field penetrates into a background plasma

Haomin Sun, Jian Chen, Alexander Khrabrov +4

Two-dimensional, electromagnetic particle-in-cell simulations are employed to study particle kinetics and power deposition in the skin layer when a Radio Frequency (RF) electromagn…

physics.plasm-ph2024

Improved algorithm for a two-dimensional Darwin particle-in-cell code

Dmytro Sydorenko, Igor D. Kaganovich, Alexander V. Khrabrov +3

A two-dimensional particle-in-cell code for simulation of low-frequency electromagnetic processes in laboratory plasmas has been developed. The code uses the Darwin method omitting…