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Mode Content Study of Propagating Waves Using Burn Patterns In the KSTAR 84-GHz ECH System SCIE SCOPUS

Title
Mode Content Study of Propagating Waves Using Burn Patterns In the KSTAR 84-GHz ECH System
Authors
Jeong, JHPark, SDo, HJWon NamkungCho, MHBae, YSJoung, MHan, WSKim, JSAn, SJYang, HLKubo, STakahashi, H
Date Issued
2010-04
Publisher
American Nuclear Society
Abstract
In order to transmit a wave efficiently in an electron cyclotron heating (ECH) system, it is important to suppress mode conversion loss caused by coupling in the matching optics unit and misalignment in the transmission line. To understand the cause of mode conversion loss, it is necessary to analyze the mode content in an oversized circular corrugated wave guide. For mode analysis of the propagating wave in the corrugated waveguide, several methods based on the phase-retrieval process and the iterative process are suggested. But, in the Korea Superconducting Tokamak Advanced Research 84-GHz ECH transmission line, a well-known method using burn patterns was used for better coupling of the output beam from the gyrotron onto the axis of the corrugated waveguide by adjusting a large ellipsoidal mirror in an L-shaped chamber, a so-called L-box. During the adjustment of the mirror in the L-box, evidence of the existence of higher modes other than HE11 was found. For the mode content study, the radiation intensity distribution was measured using thermal paper as a function of the distance along the waveguide at a high power level. The mode content of the wave was estimated by comparing the measured burn patterns and calculated patterns at different locations. This paper describes the results of mode content estimation using burn pattern images as a function of the mode mixture ratio.
Keywords
KSTAR ECH; burn pattern; mode content; GUIDES
URI
https://oasis.postech.ac.kr/handle/2014.oak/25944
DOI
10.13182/FST10-A9470
ISSN
1536-1055
Article Type
Article
Citation
FUSION SCIENCE AND TECHNOLOGY, vol. 57, no. 3, page. 274 - 280, 2010-04
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조무현CHO, MOO HYUN
Div. of Advanced Nuclear Enginrg
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