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Study and optimization of boronization in Alcator C-Mod using the Surface Science Station (S~3)

机译:使用表面科学站(S〜3)研究和优化Alcator C-Mod中的硼化

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摘要

A Surface Science Station (S3) on the Alcator C-Mod tokamak is used to study and optimize the location and rate of boron film deposition in situ during electron cyclotron (EC) discharge plasmas using 2.45 GHz radio-frequency (RF) heating and a mixture of helium and diborane (B_2D_6) gasses. The radial profile of boron deposition is measured with a pair of quartz microbalances (QMB) on S3, the faces of which can be rotated 360° including orientations parallel and perpendicular to the toroidal magnetic field B_T ~0.1 T. The plasma electron density is measured with a Langmuir probe, also on S~3 in the vicinity of the QMBs, and typical values are ~1 × 10~(16) m~3. A maximum boron deposition rate of 0.82 μg/cm~2/min is obtained, which corresponds to 3.5 nm/min if the film density is that of solid boron. These deposition rates are sufficient for boron film applications between tokamak discharges. However the deposition does not peak at the EC resonance as previously assumed. Rather, deposition peaks near the upper hybrid (UH) resonance, ~5 cm outboard of the EC resonance. This has implications for RF absorption, with the RF waves being no longer damped on the electrons at the EC resonance. The previously inferred radial locations of critical erosion zones in Alcator C-Mod also need to be re-evaluated. The boron deposition profile versus major radius follows the ion flux/density profile, implying that the boron deposition is primarily ionic. The application of a vertical magnetic field (B_v ~0.01 T) was found to narrow the plasma density and boron deposition profiles near the UH resonance, thus better localizing the deposition. A Monte Carlo simulation is developed to model the boron deposition on the different QMB/tokamak surfaces. The model requires a relatively high boron ion gyroradius of ~5 mm, indicating a B~(+1) ion temperature of ~2 eV, to match the deposition on QMB surfaces with different orientation to B_t. Additionally, the boron ion trajectories become de-magnetized at high neutral gas throughput (~0.5 Pa m~3 s~(-1)) and pressure (~2 Pa) when the largest absolute deposition rates are measured, resulting in deposition patterns, which are independent of surface orientation to B_t in optimized conditions.
机译:Alcator C-Mod托卡马克上的表面科学站(S3)用于研究和优化在使用2.45 GHz射频(RF)加热和电子回旋加速器(EC)放电等离子体期间硼薄膜沉积的位置和速率。氦气和乙硼烷(B_2D_6)气体的混合物。用S3上的一对石英微天平(QMB)测量硼沉积的径向轮廓,石英微天平的表面可以旋转360°,包括平行于和垂直于环形磁场B_T〜0.1 T的方向。测量等离子体电子密度QMBs附近的S〜3上也用Langmuir探针探测,典型值为〜1×10〜(16)m〜3。获得的最大硼沉积速率为0.82μg/ cm〜2 / min,如果膜密度为固态硼的密度,则相当于3.5 nm / min。这些沉积速率对于托卡马克放电之间的硼膜应用是足够的。但是,沉积不会如先前所假定的那样在EC共振处达到峰值。相反,沉积峰在上层混合(UH)共振附近,即EC共振外侧约5 cm。这对RF吸收有影响,因为在EC共振时,RF波不再在电子上衰减。先前推断的Alcator C-Mod中关键侵蚀区的径向位置也需要重新评估。硼沉积轮廓与主半径的关系遵循离子通量/密度分布,这意味着硼沉积主要是离子性的。发现垂直磁场(B_v〜0.01 T)的施加使UH共振附近的等离子体密度和硼沉积轮廓变窄,从而使沉积更好地局部化。开发了蒙特卡洛模拟程序以模拟不同QMB /托卡马克表面上的硼沉积。该模型需要相对较高的硼离子陀螺半径〜5 mm,表明B〜(+1)离子温度为〜2 eV,以使其在QMB表面上的沉积与B_t方向不同。此外,当测量最大绝对沉积速率时,硼离子的轨迹在高中性气体通过量(〜0.5 Pa m〜3 s〜(-1))和压力(〜2 Pa)下被消磁,从而形成沉积图案,在优化条件下,它们与B_t的表面方向无关。

著录项

  • 来源
    《Fusion Engineering and Design》 |2012年第9期|p.1700-1707|共8页
  • 作者单位

    Plasma Science and Fusion Center MIT, NW17, 175 Albany Street, Cambridge, MA 02139, USA;

    Plasma Science and Fusion Center MIT, NW17, 175 Albany Street, Cambridge, MA 02139, USA;

    Plasma Science and Fusion Center MIT, NW17, 175 Albany Street, Cambridge, MA 02139, USA;

    Plasma Science and Fusion Center MIT, NW17, 175 Albany Street, Cambridge, MA 02139, USA;

    Institute of Energy and Climate Research - Plasma Physics, Forschungszentrum Juelich GmbH, Association EURATOM-FZJ, Partner in the Trilateral Euregio Cluster, Juelich, Germany,Physikalisches Institut, Universitaetzu Koeln, D-50937 Cologne, Germany;

    Fusion Research Technologies, 519 Somerville Avenue #243, Somerville, MA 02143, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    alcator C-Mod; boronization; quartz microbalance; monte carlo simulation;

    机译:alcator C-Mod;渗硼石英微量天平蒙特卡洛模拟;
  • 入库时间 2022-08-18 00:39:14

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