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计算全息能很好地实现传统光学全息干涉衍射过程的数字化模拟,与传统实验相比,实验参数调整方便,现象直观。将计算全息引入到光学实验教学中,可以突破传统实验的诸多限制,拓宽学生的专业知识面,促进学生的综合实验技能培养。  相似文献   
2.
研究了Fe36Co36Nb4Si4.8B19.2合金薄带为磁芯的螺线管(FeCo基磁芯螺线管)的巨磁阻抗效应与磁芯长度之间的关系.研究结果表明,磁芯长度是影响FeCo基磁芯螺线管巨磁阻抗效应的重要因素.当磁芯长度小于螺线管长度时,磁芯螺线管巨磁阻抗的最大值(ΔZ/Z)max与磁芯长度呈线性关系,其线性相关系数可以根据电磁学理论推导得到;当磁芯的长度大于螺线管的长度时,由于漏磁作用,(ΔZ/Z)max与磁芯长度的关系偏离了线性关系,(ΔZ/Z)max与磁芯长度的关系曲线中有一个极值点,(ΔZ/Z)max在极值点达到最大.磁芯螺线管巨磁阻抗效应曲线的尖刺部分高度(ΔZ/Z)T与磁芯长度的关系也有类似的极值点,(ΔZ/Z)T在极值点达到最大值.磁芯螺线管巨磁阻抗效应曲线的尖刺部分对弱磁场敏感,受磁芯退磁场的影响明显,磁芯的退磁场与磁芯长度呈负指数关系. 关键词: 磁芯螺线管 FeCo基合金薄带 巨磁阻抗效应 磁芯长度  相似文献   
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Fe基合金薄带的磁性能对应力敏感,特别是退火过程应力感生磁各向异性是否可以用回火方法消除,是一个令人感兴趣的科学问题.本文采用同步辐射X射线衍射技术,观测Fe_(73.5)Cu1Nb_3Si_(13.5)B_9非晶薄带经外加394.7 MPa应力540℃保温30 min退火后,进行多次等温回火样品的微观结构,用SupereyesB011型显微摄像机记录样品应力退火和回火过程的宏观伸长量,并利用HP4294A型阻抗分析仪测量相应样品的磁各向异性.对实验数据进行曲线拟合后发现,虽然应力退火过程的残余应力引起的晶格各向异性是产生磁各向异性的主要原因,但不是唯一原因,在应力退火过程中非晶基底的蠕变引起的纳米晶晶粒定向团聚,也是应力退火感生磁各向异性的重要原因;而且,因应力退火过程中非晶基底的蠕变引起纳米晶晶粒定向团聚感生的磁各向异性无法用等温回火方法完全消除.  相似文献   
4.
The highly sensitive giant magneto-impedance effect in a solenoid containing a magnetic core of Fe36Co36Nb4Si4.8B19.2 (FeCo-based) ribbon under a weak magnetic field (WMF) is presented in this paper. The FeCo-based amorphous ribbon is prepared by single roller quenching and annealed with Joule heat in a flowing nitrogen atmosphere. The giant magnetoimpedance effect in solenoid (GMIES) profiles are measured with an HP4294A impedance analyzer. The result shows that the GMIES responds to the WMF sensitively (as high as 1580 %/A穖-1). The high sensitivity can be obtained in a moderate narrow range of annealing current density (30-34 A/mm2) and closely depends on the driven current frequency. The highest sensitivity (1580 %/A穖-1) is obtained when the FeCo-based amorphous ribbon is annealed at 32 A/mm2 for 10 min and then driven with an alterning current (AC) at the frequency of 350 kHz. The highly sensitive GMIES under the WMF may result from the multiple magnetic-anisotropic structure, which is induced by the temperature gradient produced during Joule-heating the ribbon.  相似文献   
5.
The highly sensitive giant magneto-impedance effect in a solenoid containing a magnetic core of Fe36Co36Nb4Si4.8B19.2(FeCo-based) ribbon under a weak magnetic field(WMF) is presented in this paper.The FeCo-based amorphous ribbon is prepared by single roller quenching and annealed with Joule heat in a flowing nitrogen atmosphere.The giant magnetoimpedance effect in solenoid(GMIES) profiles are measured with an HP4294A impedance analyzer.The result shows that the GMIES responds to the WMF sensitively(as high as 1580 %/A·m 1).The high sensitivity can be obtained in a moderate narrow range of annealing current density(30-34 A/mm 2) and closely depends on the driven current frequency.The highest sensitivity(1580 %/A·m 1) is obtained when the FeCobased amorphous ribbon is annealed at 32 A/mm 2 for 10 min and then driven with an alterning current(AC) at the frequency of 350 kHz.The highly sensitive GMIES under the WMF may result from the multiple magnetic-anisotropic structure,which is induced by the temperature gradient produced during Joule-heating the ribbon.  相似文献   
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