Published April 9, 2020 | Version 1

Measurement and modeling of the radio frequency sheath impedance in a large magnetized plasma

  • 1. Lodestar Research Corp.
  • 2. Oak Ridge National Laboratory
  • 3. University of California, Los Angeles
  • 4. MIT Plasma Science and Fusion Center

Description

The accompanying files contain digital data for figures in the article "Measurement and modeling of the radio frequency sheath impedance in a large magnetized plasma" by J. R. Myra, C. Lau, B. Van Compernolle, S. Vincena and J. Wright, submitted to the journal Physics of Plasmas.

Abstract
The DC and RF properties of radio frequency (RF) driven sheaths were studied in the Large Plasma Device (LAPD) at the University of California, Los Angeles. The experiments diagnosed RF sheaths on field lines connected to a grounded plate at one end and an ion cyclotron range of frequencies (ICRF) antenna at the other end. The experimental setup permitted measurement of the RF sheath impedance at the plate as a function of DC sheath voltage, with the latter controlled by varying the RF current applied to the antenna. The DC current-voltage characteristics of these sheaths and the RF sheath impedance measurements were compared with modeling. Hot electrons, present in the LAPD plasma, were inferred to contribute significantly to both the DC and RF currents and hence the RF impedance. It was postulated that at very low power hot electrons could not access the region of the plasma subject to RF waves, resulting in an increased RF impedance. Within some experimental limitations and significant assumptions, an RF sheath impedance model was verified by the experimental data.

Notes

This material is based upon work supported by the U.S. Department of Energy Office of Science, Office of Fusion Energy Sciences under Award Numbers DE-AC05-00OR22725 sub-contract 4000158507 and DE-FG02-97ER54392. Discussions with T. Carter, G. Bal, R. Barnett and members of the RF SciDAC project (Center for Simulation of Wave-Plasma Interactions) are gratefully acknowledged.

Files

fig3_vertical_scan.csv

Files (127.2 kB)

Name Size Download all
md5:b1ffd378353b950d25d59af564b9f002
558 Bytes Preview Download
md5:970db2ca08752d120a750296c8faf285
382 Bytes Preview Download
md5:a170043105af4a1c9857e3fa97c3fdea
6.3 kB Preview Download
md5:ead8c4d17d5a7a268c3196bbd9dd0529
20.7 kB Preview Download
md5:4611d3a5dcc7813204b4b0c07d56b353
31.8 kB Preview Download
md5:014409314cde052c826ca67f460fb46d
39.7 kB Preview Download
md5:93e55805852cba1e55e9d4a980851289
993 Bytes Preview Download
md5:aecdf2996c1b30eb97661246c2c6f4e5
19.2 kB Preview Download
md5:1d53defd10fbb185f70e19f492764df6
1.7 kB Preview Download
md5:96c220859df9e76fddd5f098189dcb8d
1.7 kB Preview Download
md5:a07d584ff94e04c9d5e713f9f90c769a
344 Bytes Preview Download
md5:9bb058044d18b690fdded519e1e12697
3.9 kB Preview Download