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| 1 | 电化学制备铁磁金属纳米点接触的磁电阻显示文摘运用机械抛光技术在单面敷铜板表面制备了由两根宏观金属铜薄膜电极组成的'T'形结构微米间隙,在'T'形结构微米间隙之间运用电阻负反馈控制电化学过程的方法制备了铜电极纳米间隙,在纳米间隙之间,同样运用电阻负反馈控制电化学过程的方法制备了不同大小接触面积的具有极小磁致伸缩效应特性的Ni80Fe20铁磁金属纳米点接触.测量和比较了不同接触面积的Ni80Fe20纳米点接触的磁电阻,结果表明Ni80Fe20纳米点接触的磁电阻与接触面积之间没有必然关系;在铜电极纳米间隙之间制备的Ni80Fe20纳米点接触可以减少在测量磁电阻时磁致伸缩效应对所测量的磁电阻效应的影响,而它的磁电阻大小与具有明显磁致伸缩效应的Ni纳米点接触的磁电阻大小相近,实验结果一定程度上说明了铁磁金属纳米点接触的弹道磁电阻效应与磁致伸缩效应的关系极小,但由于运用各种方法制备的铁磁金属纳米点接触在本质上都属于两个各向异性微观界面之间的机械点接触行为,所以并不能排除在测量磁电阻时随外加磁场变化而变化的两个点接触界面之间相互作用力引起的电阻变化对所测量的弹道磁电阻效应的影响. | 程浩 杨维 刘鸿 李红连 汪令江 | 2012 | 科学通报2012,57,31: | 0 |
| 2 | Magnetoresistance of the ferromagnetic nanocontacts fabricated by electrodeposition显示文摘A 'T' shaped micro-gap was fabricated by mechanical polishing between two Cu film electrodes on the surface of single-sided bonded copper.A nano-gap was then fabricated in the prepared micro-gap by resistance feedback controlled electroplating.Finally Ni 80 Fe 20 ferromagnetic nanocontacts of several sizes were fabricated in the prepared nano-gap by resistance feedback controlled electroplating.The magnetoresistance of each Ni 80 Fe 20 ferromagnetic nanocontact was not related to its size.Fabrication of the Ni 80 Fe 20 ferromagnetic nanocontacts in the nano-gap can reduce the contribution of magnetostriction to the magnetoresistance.The magnetoresistance values of the Ni 80 Fe 20 ferromagnetic nanocontacts were as high as those of the Ni ferromagnetic nanocontacts.This implies that the contribution of magnetostriction to the ballistic magnetoresistance of the ferromagnetic nanocontacts can be neglected.The ferromagnetic nanocontacts fabricated in this study,and in other cases,have two anisotropic interfaces on the sides of the nanocontacts.However,the magnetic field can alter the contribution of the interaction between the two anisotropic interfaces to the ballistic magnetoresistance of the ferromagnetic nanocontacts,and this effect can not be ruled out yet. | CHENG Hao YANG Wei LIU Hong LI HongLian WANG LingJiang | 2013 | Chinese Science Bulletin2013,58,6: | 0 |
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