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박현거

Park, Hyeon Keo
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Dynamic spectra of radio frequency bursts associated with edge-localized modes

Author(s)
Thatipamula, Shekar G.Yun, G. S.Leem, J.Park, Hyeon KeoKim, K. W.Akiyama, T.Lee, S. G.
Issued Date
2016-06
DOI
10.1088/0741-3335/58/6/065003
URI
https://scholarworks.unist.ac.kr/handle/201301/19609
Fulltext
http://iopscience.iop.org/article/10.1088/0741-3335/58/6/065003/meta;jsessionid=35BB54BD2E0EC00D38AFB97A349B4711.c1.iopscience.cld.iop.org
Citation
PLASMA PHYSICS AND CONTROLLED FUSION, v.58, no.6, pp.065003
Abstract
Electromagnetic emissions in the radio frequency (RF) range are detected in the high-confinement-mode (H-mode) plasma using a fast RF spectrometer on the KSTAR tokamak. The emissions at the crash events of edge-localized modes (ELMs) are found to occur as strong RF bursts with dynamic features in intensity and spectrum. The RF burst spectra (obtained with frequency resolution better than 10 MHz) exhibit diverse spectral features and evolve in multiple steps before the onset and through the ELM crash: (1) a narrowband spectral line around 200 MHz persistent for extended duration in the pre-ELM crash times, (2) harmonic spectral lines with spacing comparable to deuterium or hydrogen ion cyclotron frequency at the pedestal, (3) rapid onset (faster than similar to 1 mu s) of intense RF burst with wide-band continuum in frequency which coincides with the onset of ELM crash, and (4) a few additional intense RF bursts with chirping-down narrow-band spectrum during the crash. These observations indicate plasma waves are excited in the pedestal region and strongly correlated with the ELM dynamics such as the onset of the explosive crash. Thus the investigation of RF burst occurrence and their dynamic spectral features potentially offers the possibility of exploring H-mode physics in great detail
Publisher
IOP PUBLISHING LTD
ISSN
0741-3335
Keyword (Author)
radio frequency burstRF spectrometerfrequency chirpingedge-localized mode crashion cyclotron harmonic waves
Keyword
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