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Experimental constraint on the radial mode number of the geodesic acoustic mode from multi-point Langmuir probe measurements in MAST Ohmic plasma

B Hnat, S Gadgil, A Kirk, F Militello, N Walkden, the MAST Team2018年Plasma Physics and Controlled FusionIF 2.2出版社

Reciprocating Mach probe data is used to estimate the radial wave number of oscillatory zonal flows in Ohmic MAST plasma. An intermittent ∼10 kHz mode, previously identified as a geodesic acoustic mode (GAM), is detected in the wavelet decomposition and windowed spectra of plasma potential fluctuations of the MAST tokamak edge plasma. Two-points phase differencing technique is then applied to probe pins with radial and poloidal separations giving an estimate of the radial wave number at the desired range of frequencies. The phase velocity of propagation and an estimate of the shearing rate of the GAM is obtained. We measure the radial mode number range kr ≈ 0.3–1.0 cm−1 and a radial propagation speed of up to ∼1 km s−1. The GAM shearing rate is an order of magnitude smaller than the growth rate of drift-like turbulence. These results are consistent with the estimates obtained previously from multi-fluid numerical simulations of GAM in MAST.

日本語訳

往復型マッハプローブデータを用いて、オーミック加熱MASTプラズマにおける帯状流の径方向波数を推定した。MASTトカマク周辺プラズマのプラズマ電位変動のウェーブレット分解および窓付きスペクトルにおいて、約10kHzの間欠的なモードが検出され、これは以前に測地音響モード(GAM)と同定されている。次に、径方向およびポロイダル方向に離隔したプローブピンに対して二点位相差法を適用し、対象周波数範囲における径方向波数の推定値を得た。位相速度の伝播およびGAMのせん断速度の推定値が得られた。径方向モード数の範囲はkr≈0.3–1.0cm⁻¹、径方向伝播速度は最大約1km s⁻¹と測定された。GAMのせん断速度は、ドリフト波乱流の成長率よりも一桁小さい。これらの結果は、MASTにおけるGAMの多流体数値シミュレーションから以前に得られた推定値と一致する。

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mast高精度(タイトル一致)

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MASTOhmic heatingLangmuir probeAcoustic modeGeodesic acoustic mode
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