Comparative study between the reflective optics and lens based system for microwave imaging system on KSTAR
Creators
- 1. POSTECH, Pohang, Gyeongbuk 790-784 (Korea, Republic of)
- 2. University of California at Davis, Davis, California 95616 (United States)
Description
Recently, two-dimensional microwave imaging diagnostics such as the electron cyclotron emission imaging (ECEI) system and microwave imaging reflectometry (MIR) have been developed to study magnetohydrodynamics instabilities and turbulence in magnetically confined plasmas. These imaging systems utilize large optics to collect passive emission or reflected radiation. The design of this optics can be classified into two different types: reflective or refractive optical systems. For instance, an ECEI/MIR system on the TEXTOR tokamak [Park et al., Rev. Sci. Instrum. 75, 3787 (2004)] employed the reflective optics which consisted of two large mirrors, while the TEXTOR ECEI upgrade [B. Tobias et al., Rev. Sci. Instrum. 80, 093502 (2009)] and systems on DIII-D, ASDEX-U, and KSTAR adopted refractive systems. Each system has advantages and disadvantages in the standing wave problem and optical aberrations. In this paper, a comparative study between the two optical systems has been performed in order to design a MIR system for KSTAR.
Additional details
Identifiers
- DOI
- 10.1063/1.3491189;
Publishing Information
- Journal Title
- Review of Scientific Instruments
- Journal Volume
- 81
- Journal Issue
- 10
- Journal Page Range
- p. 10D932-10D932.3
- ISSN
- 0034-6748
- CODEN
- RSINAK
INIS
- Country of Publication
- United States
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 44019188
- Subject category
- S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
- Descriptors DEI
- ASDEX TOKAMAK; CYCLOTRONS; DESIGN; DOUBLET-3 DEVICE; ELECTRON EMISSION; MAGNETOHYDRODYNAMICS; MICROWAVE RADIATION; OPTICAL SYSTEMS; PLASMA CONFINEMENT; PLASMA INSTABILITY; REFRACTION; STANDING WAVES; TEXTOR TOKAMAK; TURBULENCE
- Descriptors DEC
- ACCELERATORS; CLOSED PLASMA DEVICES; CONFINEMENT; CYCLIC ACCELERATORS; ELECTROMAGNETIC RADIATION; EMISSION; FLUID MECHANICS; HYDRODYNAMICS; INSTABILITY; MECHANICS; RADIATIONS; THERMONUCLEAR DEVICES; TOKAMAK DEVICES
Optional Information
- Notes
- (c) 2010 American Institute of Physics