plasma sheath

英 [ˈplæzmə ʃiːθ] 美 [ˈplæzmə ʃiːθ]

网络  等离子体鞘; 等离子鞘; 电浆鞘; 等离子体鞘层; 等离子体壳层

电力



双语例句

  1. It was shown that the ion density is higher and the electron temperature is lower in the vicinity of inductively coupled plasma sheath according to the ionic line and atomic line.
    原子谱线和离子谱线特性分析表明,在鞘层附近区域感应耦合等离子体具有较高的离子密度和较低的电子温度。
  2. Characteristic of plasma sheath in the presence of secondary electron emission and negative ions
    二次电子发射和负离子存在时的鞘层结构特性
  3. Calculation of Propagation Characteristics of Electromagnetic Wave in Plasma Sheath Using ADE-FDTD Method
    等离子体鞘套中电磁波传播特性的ADE-FDTD计算
  4. The Propagation Characteristic of Oblique Incident Plane Electromagnetic Waves through Re-entry Plasma Sheath Layer
    再入等离子体鞘层中斜入射平面电磁波的传播特性
  5. Two-dimensional Fluid Simulation of the RF Bias Plasma Sheath Characteristics
    射频偏压等离子体鞘层特性的二维流体力学模拟
  6. Analysis of Optical Emission Spectra from ICP of Ar in the Vicinity of Plasma Sheath
    ICP等离子体鞘层附近区域发光光谱特性分析
  7. Structure of radio-frequency flat plasma sheath in an oblique magnetic field
    斜磁场作用下的射频等离子体平板鞘层结构
  8. The effects of the target shape on plasma sheath evolution and the implanted ion parameters have been studied.
    通过改变靶的形状,考察了不同角度外角对鞘层的时空演化及等离子体参量的影响。
  9. Effect of Driving Current Density on Low-Pressure Capacitive Radio Frequency Plasma Sheath Potential Difference and Ion Kinetic Energy
    驱动电流密度对低压容性射频鞘电势及离子动能的影响
  10. The structure of the plasma sheath in an oblique magnetic field was investigated with the fluid method.
    采用流体力学理论,研究了斜磁场作用下的等离子体鞘层结构。
  11. A non power supply probe was developed to detect the plasma cloud voltage, which consists of plasma arc voltage gradient and plasma sheath voltage.
    文中采用无源探针对由等离子弧梯度电压和等离子鞘层电压构成的等离子反翘(等离子云)电压进行检测。
  12. A radio frequency flat plasma sheath model in an oblique magnetic field is built, which has one-dimensional coordinate space and three-dimensional speed space. The effect of magnetic field on the structure of radio frequency sheath and characteristic parameters are discussed.
    建立一个一维坐标空间、三维速度空间的斜磁场作用下的射频等离子体平板鞘层模型,讨论了磁场对射频鞘层结构及其参数特性的影响。
  13. The temporal evolution of the plasma sheath during plasma source ion implantation ( PSII) is crucial because it affects the resultant surface properties and structures.
    等离子体源离子注入过程中,鞘层的演化规律直接影响到离子注入到材料中的深度进而影响材料表面的性质和结构,对材料的不同部位这种影响是不同的。
  14. In this paper, several methods of solving the problem of electromagnetic wave propagation in a inhomogeneous plasma sheath is investigated.
    本文主要研究电磁波在不均匀等离子体鞘套中传播的一些近似计算方法。
  15. Analysis and calculation of forces on macro-particles in plasma sheath
    大颗粒在等离子体鞘层中的受力分析与计算
  16. Experiments were made to study the effects of an artificial plasma sheath on the performance of a meter wave band antenna surrounded by the plasma and on the decay of the wave passing through that plasma.
    对660&760mm长的米波半波天线在人工等离子体包围下的辐射性能和特性阻抗受到的影响以及电波穿过等离子体后场强的衰减进行了实验研究。
  17. Knowing and controlling the motion of dusts in the plasma sheath, would be properties to use and eliminate dusts, as well as to solve the problems of realizing control process with external magnetic field.
    了解和控制尘埃在等离子体磁鞘中的运动,有利于利用和消除尘埃,有助于解决利用外磁场实现控制工艺的一些问题。
  18. An Experimental Study of a Plasma Sheath on the Performance of a Meter Wave Band Antenna
    等离子体鞘套对天线性能影响的实验研究
  19. On the propagation of electromagnetic waves in an inhomogeneous plasma sheath(ⅱ)
    不均匀等离子体鞘套中电磁波的传播(Ⅱ)
  20. Applying basic magnetofluiddynamic theory, the author analyzes the model flowing in plasma sheath under the combined action of magnetic and electric field.
    本文应用磁流体力学基础理论,分析了在磁场和电场联合作用下,等离子体鞘中模型流动。
  21. The existence of dust grains could change the characteristic of plasma sheath evidently, and pollute process materials.
    尘埃粒子的存在显著地改变等离子体鞘层的性质,直接污染加工材料。
  22. Study of the Motion of Charged Particles and the Formation of Dust Crystal in Radio-frequency Plasma Sheath
    射频鞘层中尘埃粒子的运动过程及尘埃晶格形成机理的研究
  23. The hydrodynamic-fluid model and the self-consistent dust charging model are used to investigate the Bohm criterion for the dusty plasma sheath.
    采用流体方程和自洽电荷变化模型研究了尘埃等离子体鞘层的玻姆判据。
  24. Plasma sheath of moving spacecraft in magnetized plasma of low earth orbit
    低轨道磁化等离子体中运动航天器等离子体鞘层特性
  25. Plasma sheath in a magnetic field
    磁场中等离子体鞘层的结构
  26. Effect of Plasma Density on Ion Momentum in Radio Frequency Plasma Sheath
    射频鞘层中等离子体浓度对离子动量的影响
  27. Plasma sheath, a transition region between the plasma and wall, plays an important role on the plasma-wall interaction.
    作为等离子体和器壁的过渡区域,鞘层在等离子体与器壁的相互作用中起到了重要作用。
  28. Ethylene and silane reacted to generate silicon carbide particles, in the radio-frequency plasma sheath layer the silicon carbide particles formed into the dust clouds and dust voids.
    硅烷和乙烯发生反应产生碳化硅尘埃颗粒,在射频等离子体中形成尘埃云及尘埃空洞。
  29. Therefore, it is significant and worthy to research the plasma sheath.
    所以对等离子体鞘层的研究具有重要的意义和价值。
  30. So the investigation of fast ions interactions with magnetized plasma sheath is significance.
    因此研究快离子对磁化等离子体鞘层的影响具有重要的意义。