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The interplay between the lattice and magnetism in La(Fe_(11.4)Al_(1.6))C_(0.02) studied by powder neutron diffraction

The interplay between the lattice and magnetism in La(Fe_(11.4)Al_(1.6))C_(0.02) studied by powder neutron diffraction
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摘要 The crystallographic structure and magnetic properties of La(Fell.4Alz.6)C0.02 are studied by magnetic measurernent and powder neutron diffraction with temperature and applied magnetic field. Rietveld refinement shows that La(Fe11.4Al1.6)C0.02 crystallizes into the cubic NaZn13-type with two different Fe sites: FeI (8b) and FeII (96i), and that A1 atoms preferentially occupy the FeII site. A ferromagnetic state can he induced at a medial temperature of 39 K-139 K by an external magnetic field of 0.7 T, and a large lattice is correspondingly found at 100 K and 0.7 T. In all other conditions, La(Fe11.4Al1.6)C0.02 has no net magnetization in the paramagnetic (T 〉 TN = 182 K) or antifer- romagnetic states, and thus keeps its small lattice. Analysis of the Fe Fe bond length indicates that the ferromagnetic state prefers longer Fe-Fe distances. The crystallographic structure and magnetic properties of La(Fell.4Alz.6)C0.02 are studied by magnetic measurernent and powder neutron diffraction with temperature and applied magnetic field. Rietveld refinement shows that La(Fe11.4Al1.6)C0.02 crystallizes into the cubic NaZn13-type with two different Fe sites: FeI (8b) and FeII (96i), and that A1 atoms preferentially occupy the FeII site. A ferromagnetic state can he induced at a medial temperature of 39 K-139 K by an external magnetic field of 0.7 T, and a large lattice is correspondingly found at 100 K and 0.7 T. In all other conditions, La(Fe11.4Al1.6)C0.02 has no net magnetization in the paramagnetic (T 〉 TN = 182 K) or antifer- romagnetic states, and thus keeps its small lattice. Analysis of the Fe Fe bond length indicates that the ferromagnetic state prefers longer Fe-Fe distances.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第4期419-423,共5页 中国物理B(英文版)
基金 supported by the National Basic Research Program of China (973 Program) (Grant No. 2010CB833102) the National Natural Science Foundation of China (Grant No. 10974244)
关键词 neutron diffraction crystallographic structure magnetic phase transition neutron diffraction, crystallographic structure, magnetic phase transition
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  • 1Gschneidner Jr K A, Pecharsky V K and Tsokol A O 2005 Rep. Pro9. Phys. 68 1479.
  • 2Briick Ekkes 2005 J. Phys. D: Appl. Phys. 38 R381.
  • 3Pecharsky V K and Gschneidner Jr K A 1997 Phys. Rv. Lett. 78 4494.
  • 4Pecharsky V K and Gschneidner Jr K A 1997 Appl. Phys. Lett. 70 3299.
  • 5Tegus O, Briick E, Buschow K H J and de Boer F R 2002 Nature 415 150.
  • 6Zhang X X, Wen G H, Wang F W, Wang W H, Yu C H and Wu G H 2000 Appl. Phys. Lett. 77 3072.
  • 7Palstra T T M, Nieuwenhuys G J, Mydosh J A and Buschow K H J 1984 J. Appl. Phys. 55 2367.
  • 8Helmholdt R B, Palstra T T M, Nieuwenhuys G J, My- dosh J A, van der Kraan A M and Buschow K H J 1986 Phys. Rev. B 34 169.
  • 9Hu F X, Shen B G, Sun J R, Cheng Z H, Rao G H and Zhang X X 2001 Appl. Phys. Lett. 78 3675.
  • 10Zhang H W, Chen J, Liu G J, Zhang L G, Sun J R and Shen B G 2006 Phys. Rev. B 74 212408.

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