29 citations · 62 across the 18 of their papers we have counts for
6 papers · 2 filters
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…
Resonantly Driven Electron Bernstein Waves in Magnetized Low-Pressure Capacitive Discharges
Deepak Gautam, Sarveshwar Sharma, Igor Kaganovich +1
The physics of capacitively coupled plasma (CCP) discharges is investigated in a mildly magnetized regime, defined by , where and denote…
Simulation Studies of Resonant Excitation of Electron Bernstein Waves in Capacitive Discharges
Deepak Gautam, Sarveshwar Sharma, Igor Kaganovich +1
The behavior of capacitive coupled plasma (CCP) discharges is investigated in a mildly magnetized regime, defined by the condition 1 2, where …
Sheath electron heating in surface wave discharges driven at microwave frequencies
Denis Eremin, Andrew T. Powis, Igor D. Kaganovich
Using fully electromagnetic particle-in-cell/Monte Carlo simulations, the electron heating due to interaction with a moving sheath is demonstrated to dominate in surface wave-drive…
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…
Three-dimensional Helical-rotating Plasma Structures in Beam-generated Partially Magnetized Plasmas
Jian Chen, Andrew T. Powis, Igor D. Kaganovich +1
Azimuthal structures emerging in beam-generated partially magnetized plasmas are investigated using three-dimensional particle-in-cell/Monte Carlo collision simulations. Two distin…