Rights:
Creative Commons Attribution 4.0 International
(CC BY)
Cite as:
Kim, Eun-Hwa, Ono, Masayuki, Shiraiwa, Syun'ichi, Bertelli, Nicola, Poulos, Matthew, Van Compernolle, Bart, Bortolon, Alessandro, & Pinsker, Robert. (2024). Full-wave simulations on helicon and parasitic excitation of slow waves near the edge plasma [Data set]. Princeton Plasma Physics Laboratory, Princeton University. https://doi.org/10.34770/g03g-qd76
@electronic{kim_eunhwa_2024, author = {Kim, Eun-Hwa and Ono, Masayuki and Shiraiwa, Syun'ichi and Bertelli, Nicola and Poulos, Matthew and Van Compernolle, Bart and Bortolon, Alessandro and Pinsker, Robert}, title = {{Full-wave simulations on helicon and par asitic excitation of slow waves near the edge plasma}}, publisher = {{Princeton Plasma Physics Laboratory, Pri nceton University}}, year = 2024, url = {https://doi.org/10.34770/g03g-qd76} }
Description:
Full-wave simulations of helicon and slow mode waves in DIII-D have been conducted using the Petra-M simulation code. The manuscript investigates the effect of misalignment of the Faraday screen and electron density in the scrape-off layer on the excitation and propagation of fast helicon and slow mode waves.
United States Department of Energy, DE-AC02-09CH11466 United States Department of Energy, DE-FC02-04ER54698 United States Department of Energy SciDAC, DE-SC0024369 a DOE Office of Science User Facility supported by the Office of Science of the U.S. Department of Energy, DE-AC02-05CH11231 NERSC, FES-ERCAP0027700