Published March 20, 2008 | Version v1
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Investigation of EBW Thermal Emission and Mode Conversion Physics in H-Mode Plasmas on NSTX

Description

High β plasmas in the National Spherical Torus Experiment (NSTX) operate in the overdense regime, allowing the electron Bernstein wave (EBW) to propagate and be strongly absorbed/emitted at the electron cyclotron resonances. As such, EBWs may provide local electron heating and current drive. For these applications, efficient coupling between the EBWs and electromagnetic waves outside the plasma is needed. Thermal EBW emission (EBE) measurements, via oblique B-X-O double mode conversion, have been used to determine the EBW transmission efficiency for a wide range of plasma conditions on NSTX. Initial EBE measurements in H-mode plasmas exhibited strong emission before the L-H transition, but the emission rapidly decayed after the transition. EBE simulations show that collisional damping of the EBW prior to the mode conversion (MC) layer can significantly reduce the measured EBE for Te < 20 eV, explaining the observations. Lithium evaporation was used to reduce EBE collisional damping near the MC layer. As a result, the measured B-X-O transmission efficiency increased from < 10% (no Li) to 60% (with Li), consistent with EBE simulations.

Availability note (English)

Also available from OSTI as DE00959394; PURL: https://www.osti.gov/servlets/purl/959394-qj2UbO/

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Additional details

Publishing Information

Imprint Pagination
10 p.
Report number
PPPL--4307

Conference

Title
15. Joint Workshop on Electron Cyclotron Emission and Electron Cyclotron Resonance Heating
Dates
10-13 Mar 2008
Place
Yosemite, CA (United States)

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
41031910
Subject category
S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
Resource subtype / Literary indicator
Conference
Descriptors DEI
CYCLOTRON RESONANCE; CYCLOTRONS; DAMPING; ECR HEATING; EFFICIENCY; ELECTROMAGNETIC RADIATION; ELECTRONS; EVAPORATION; HEATING; LITHIUM; MODE CONVERSION; PLASMA
Descriptors DEC
ACCELERATORS; ALKALI METALS; CYCLIC ACCELERATORS; ELEMENTARY PARTICLES; ELEMENTS; FERMIONS; HEATING; HIGH-FREQUENCY HEATING; LEPTONS; METALS; PHASE TRANSFORMATIONS; PLASMA HEATING; RADIATIONS; RESONANCE

Optional Information

Contract/Grant/Project number
ACO2-76CHO3073
Funding organization
USDOE Office of Science (United States)