atomic magnetic force 中文意思是什麼

atomic magnetic force 解釋
原子磁力
  • atomic : adj. 1. 原子的。2. 極微的。3. 強大的。
  • magnetic : adj. 1. 磁(性)的;(可)磁化的。2. 吸引人心的;有魅力的。3. 催眠術的。
  • force : n 1 力,勢。2 體力,氣力,精力,魄力。3 暴力,壓力;兵力,武力。4 〈pl 〉 部隊,軍隊,兵力。5 勢...
  1. At last, we observed the surface morphology and magnetism of the samples by atomic force microscopy ( afm ) and magnetic force microscopy ( mfm ), the formation of mnga and mnas magnetic precipitates was discovered and the precipitates were affected by the conditions of implantation and annealing

    最後,通過原子力顯微鏡( afm )和磁力顯微鏡( mfm )觀察了樣品的表面形貌和磁特性,發現了退火樣品中形成了磁性第二相mnga或mnas粒子,並且這些磁性粒子的磁特性與注入條件和退火條件有關。
  2. The phase structure of different cu - fe thin films were studied by using grazing incidence x - ray analysis ( gixa ). the texture and residual stress of different cu - fe thin films were measured by scan of x - ray diffraction ( xrd ) and 2 scan with different. the thicknesses of different thin films were characterized by means of small angle x - ray scattering ( saxs ) technique. by using atomic force microscope ( afm ) measured surface roughness of thin films. the component of different thin film was characterized by energy disperse spectrum ( eds ) and x - ray fluorescence ( xrf ). the magnetic properties of cu - fe thin films were measured by means of vibrating sample magnetometer ( vsm ). in addition, the giant magnetoresistance ( gmr ) effects of different films were also measured. the original resistance of the film fabricated by a direction - current magnetron sputtering system is directly affected by bias voltage

    利用掠入射x射線分析( gixa )技術對不同cu - fe薄膜的相結構進行了研究;利用xrd掃描及不同角度的2掃描對薄膜進行了結晶織構及殘余應力分析;運用小角x射線散射( saxs )技術測量了薄膜的厚度;採用原子力顯微鏡( afm )觀察了薄膜的表面形貌;運用能量損失譜( eds )及x射線熒光光譜( xrf )對薄膜進行了成分標定;使用振動樣品磁強計測量了不同cu - fe過飽和固溶體薄膜的磁性能;最後利用自製的磁阻性能測試設備測量了真空磁場熱處理前後不同薄膜的巨磁阻值。
  3. Further more, atomic force microscopy ( afm ) results showed no noticeable difference in grain size. it ' s concluded that magnetic treatments results in oriented stacking of vopc molecules. this change in crystal structure leads to an improvement in photoconductivity behavior : a photoreceptor used pbpc as the charge generation layer had a much shorter decay time

    我們分別制備了氧化鋅( zno )酞菁鉛( pbpc )和氧化錫( sno )酞菁鉛( pbpc )多層異質復合薄膜,對兩種結構的復合薄膜進行了紫外-可見吸收光譜測試( uv - vis )和x射線衍射分析( xrd ) 。
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