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Chin. Phys. B, 2014, Vol. 23(7): 070701    DOI: 10.1088/1674-1056/23/7/070701
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Ferromagnetic materials under high pressure in a diamond-anvil cell:A magnetic study

Wang Xin (王鑫)a b, Hu Tian-Li (胡天立)a, Han Bing (韩冰)a, Jin Hui-Chao (靳会超)a, Li Yan (李岩)a b, Zhou Qiang (周强)a b, Zhang Tao (张涛)a
a College of Physics, Jilin University, Changchun 130012, China;
b State Key Laboratory of Superhard Materials, Jilin University, Changchun 130012, China
Abstract  A magnetic-parameter measurement system for study of ferromagnetic materials under high pressure using a diamond-anvil cell is built. The factors affecting the measurement sensitivity are analyzed and the possibility of improving the sensitivity is mentioned. Based on the system, the magnetization curves of iron as a function of pressure are obtained. The start point and end point of pressure-induced magnetic transition of iron are observed at room temperature.
Keywords:  iron      high pressure      magnetic transition      magnetization curve  
Received:  10 March 2014      Revised:  24 April 2014      Accepted manuscript online: 
PACS:  52.70.Ds (Electric and magnetic measurements)  
  07.35.+k62.50.-p75.30.Kz  
Fund: Project supported by the Open Project of State Key Laboratory of Superhard Materials of Jilin University, China (Grant No. 201106).
Corresponding Authors:  Han Bing, Zhang Tao     E-mail:  han@jlu.edu.cn;zhangt@jlu.edu.cn
About author:  52.70.Ds; 07.35.+k62.50.-p75.30.Kz

Cite this article: 

Wang Xin (王鑫), Hu Tian-Li (胡天立), Han Bing (韩冰), Jin Hui-Chao (靳会超), Li Yan (李岩), Zhou Qiang (周强), Zhang Tao (张涛) Ferromagnetic materials under high pressure in a diamond-anvil cell:A magnetic study 2014 Chin. Phys. B 23 070701

[1] Struzhkin V V, Hemley R J, Mao H K, Timofeev Y A and Eremets M I 2000 Hyperfine Interactions 128 323
[2] Meng X X, Fan J, Bao K, Li F F, Huang X L, Li Y, Tian F B, Duan D F, Jin X L, Zhu P W, He Z, Zhou Q, Gao C X, Liu B B and Cui T 2014 Chin. Phys. B 23 16102
[3] Jing Q M, Wu Q, Liu L, Bi Y, Zhang Y, Liu S G and Xu J A 2012 Chin Phys. B 21 106201
[4] Jayaraman A 1983 Rev Mod Phys 55 65
[5] Timofeev Y A, Struzhkin V V, Hemley R J, Mao H K and Gregoryanz E A 2002 Rev Sci Instrum 73 371
[6] Kim C C, Reeves M E, Osofsky M S, Skelton E F and Liebenberg D H 1994 Rev Sci Instrum 65 992
[7] Timofeev Y A, Mao H K, Struzhkin V V and Hemley R J 1999 Rev Sci Instrum 70 4059
[8] Alireza P L and Julian S R 2003 Rev Sci Instrum 74 4728
[9] Jackson D D, Aracne R C, Malba V, Weir S T, Catledge S A and Vohra Y K 2003 Rev Sci Instrum 74 2467
[10] Yu Y, Zhai G J and Jin C Q 2009 Chin Phys Lett. 26 026201
[11] Hu T L, Wang X, Han B, Li Y, Huang F X, Zhou Q and Zhang T 2013 Chin. Phys. B 22 120701
[12] Ma Y Z, Somayazulu M, Shen G Y, Mao H K, Shu J F and Hemley R J 2004 Phys. Earth Planet. Inter. 143 455
[13] Ekman M, Sadigh B, Einarsdotter K and Blaha P 1998 Phys. Rev. B 58 5296
[14] Friák M and Šob M 2008 Phys Rev B 77 174117
[15] Johnson D F and Carter E A 2008 J Chem Phys 128 104704
[16] Lizárraga R, Nordström L, Eriksson O and Wills J 2008 Phys Rev B 78 064410
[17] Liu J B and Johnson D D 2009 Phys Rev B 79 134113
[18] Yang S, Bao H X, Zhou C, Wang Y, Ren X B, Song X P, Yoshitaka M, Yoshio K, Masahiko T and Keisuke K 2013 Chin Phys B 22 046101
[19] Pipkorn D N, Edge C K, Debrunner P, De Pasquali G, Drickamer H G and Frauenfelder H 1964 Phys Rev 135 A1604
[20] Saburo N, Tetsuya S, Takateru K, Toshio T and Shoichi E 2002 J Phys: Condens. Mat 14 11167
[21] Taylor R D, Pasternak M P and Jeanloz R 1991 J Appl Phys. 69 6126
[22] Baudelet F, Pascarelli S, Mathon O, Itie J P, Polian A, d'Astuto M and Chervin J C 2005 J Phys.: Condens Mat 17 S957
[23] Rueff J P, Krisch M, Cai Y Q, Kaprolat A, Hanfland M, Lorenzen M, Masciovecchio C, Verbeni R and Sette F 1999 Phys Rev B 60 14510
[24] Wang F M and Ingalls R 1998 Phys Rev B 57 5647
[25] Monza A, Meffre A, Baudelet F, Rueff J P, d'Astuto M, Munsch P, Huotari S, Lachaize S, Chaudret B and Shukla A 2011 Phys Rev Lett 106 247201
[26] Mathon O, Baudelet F, Itie J P, Polian A, d'Astuto M, Chervin J C and Pascarelli S 2004 Phys. Rev. Lett. 93 255503
[27] Gilder S and Glen J 1998 Science 279 72
[28] Adams D M, Appleby R and Sharma S K 1976 J Phys E: Sci Instrum. 9 1140
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