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Pr掺杂对(Fe_(100-x)Co_x)/Cu多层膜GMR及电磁性能的影响

Influence of Pr Content on the Giant Magnetoresistance and Electromagnetic Properties of(Fe_(100-x)Co_x)/Cu Multilayer Films
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摘要 采用直流磁控溅射法制备Prx(Fe100-xCox)100-x/Cu多层膜,X射线衍射实验结果表明,稀土元素Pr有促进FeCo、Cu的相分离的作用,热处理提高了薄膜的结晶度;巨磁电阻(GMR)效应测量结果表明,在同样的退火温度下,随着Pr掺杂含量的增加,薄膜的GMR值呈急速下降趋势;随着退火温度的升高,样品的巨磁电阻效应GMR呈现出先增后减小的趋势。随着退火温度的升高,样品的矫顽力随之升高,并可在在550℃时达到4.0437×104A/m。 The samples of Prx(Fe100-xCox)/Cu multilayer films have been prepared by a DC magneto controlled sputtering method.The XRD data indicate that Pr element can promote the phase separation of FeCo and Cu,and annealing treatment improves the crystallinity of the films.Giant magnetoresistance measurements indicate that the value of GMR(giant magnetoresistance) decreases with more Pr content at the same annealing temperature,while the value of GMR effect first increases and then decreases with the increasing annealing temperature.The coercivity of the samples increases with the annealing temperature increasing and reaches the maximum of 4.0437x104A/m at 550 ℃.
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2015年第11期2897-2901,共5页 Rare Metal Materials and Engineering
基金 国家自然科学基金(51261004) 广西自然科学基金(0575093 2012GXNSFGA060002 2013GXNSFBA019242)
关键词 (Fe100-xCox)/Cu多层膜 稀土Pr掺杂 巨磁电阻效应 电磁性能 (Fe100-xCox)/Cu multilayer films Pr doping giant magnetoresistance electromagnetic properties
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参考文献10

  • 1Baibich M N, Brato J M, Fert A et al. Phys Rev Lett[J], 1988, 61:2472.
  • 2Parkin S S, More N, Roehe K P. Phys Rev Lett[J], 1990, 64: 2304.
  • 3Lucinski T, Stobiecki F, Elefant D et al. Magn Magn Mat[J], 1997, 174:192.
  • 4Milner A, Gerber A, Groisman B et al. Phys Rev Lett[J], 1996, 76:475.
  • 5Adrian T, Lars N, Peter Jet al. Nano Lett[J], 2000,406:480.
  • 6Kazuhiko Tonooka, Okia Nishimura. Applied Surface Science [J], 2001, 169-170:500.
  • 7成钢,吴勇,顾正飞,成钧,郑富强,李锐锋,邓婷.退火、稀土Pr对Pr_x(Co_(40)Ag_(60))_(100-x)颗粒膜的结构与巨磁电阻效应的影响[J].稀有金属材料与工程,2011,40(6):1041-1044. 被引量:2
  • 8Xiao Gang, Wang Jianqing, Xiong Peng. Appl Phys Lett[J], 1993, 62(4): 420.
  • 9Grunberg Pet al. Phys Rev Left[J], 1986, 57:2442.
  • 10Ge Shihui, Zhang Zongzhi, Xu Tao et al. J Magnetism and Magnetic Materials[J], 1997, 168:35.

二级参考文献16

  • 1Baibich M N, Brato J M, Fert A et al. Phys Rev Lett[J], 1988, 61:2472.
  • 2Berkowits A E, Mitekell J R, Corey M Jet al. Phys Rev Lett[J], 1992, 68:3745.
  • 3Xiao J Q, Jiang J S, Chien C L. Phys Rev Lett[J], 1992, 68: 3749.
  • 4Milner A, Gerber A, Groisman Bet al. Phys Rev Lett[J], 1996, 76:475.
  • 5Xiao Gang, Wang Jianqing, Xiong Peng. Appl Phys Lett[J], 1993, 62(4): 420.
  • 6Ge Shihui, Zhang Zongzhi, Xu Tao et al. J Magnetism and Magnetic Materials[J], 1997, 168:35.
  • 7Okano R, Takanashi K, Hono K et al. J Appl Phys[J], 1995, 77(11): 5843.
  • 8Yu R H, Zhang X X, Tejada Jet al. J Magnetism and Magnetic Materials[J], 1996, 164:99.
  • 9Malkinski L M, Wang J Q, Seip C T et al. J Appl Phys[J], 1999, 85(8): 4471.
  • 10Wang Changzheng(王长征).Zhou Ning(周宁),Rong Yong-hua(戎咏华)et al[J].功能材料,2003,:238-238.

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