0000000000934524

AUTHOR

Takeshi Kanomata

showing 2 related works from this author

Magnetization and61Ni Mössbauer effect study of the ternary arsenide CrNiAs

2008

The results of x-ray diffraction, dc magnetization, and 61Ni M?ssbauer spectroscopy studies of the ternary arsenide CrNiAs are reported. This compound crystallizes in the orthorhombic Fe2P-type structure (space group ) with the lattice parameters a = 6.1128(2)?? and c = 3.6585(1)??. CrNiAs is a mean-field ferromagnet with Curie temperature TC = 171.9(1)?K and the critical exponents ? = 0.514(18), ? = 1.010(16), and ? = 2.922(10). The temperature dependence of the magnetic susceptibility above TC follows the modified Curie?Weiss law with a paramagnetic Curie temperature of 176.0(3)?K and effective magnetic moment per transition metal atom of 2.42(1)??B. The magnetic moment per formula unit a…

Curie–Weiss lawCondensed matter physicsMagnetic momentChemistryCondensed Matter PhysicsMagnetic susceptibilitysymbols.namesakeMagnetizationFerromagnetismsymbolsCurie temperatureGeneral Materials ScienceHyperfine structureDebye modelJournal of Physics: Condensed Matter
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Magnetic properties and61Ni Mössbauer spectroscopy of the ternary phosphide CrNiP

2008

The results of x-ray diffraction, dc magnetization, and 61Ni Mossbauer spectroscopy studies of the ternary phosphide CrNiP are reported. This compound crystallizes in the orthorhombic Co2P-type structure (space group Pnma) with the lattice parameters a = 5.7965(1) A, b = 3.5337(1) A, and c = 6.8123(2) A. NiCrP is a ferromagnet with Curie temperature TC = 135.1(1) K. The ferromagnetic-to-paramagnetic transition is characterized by the critical exponents β = 0.355(22), γ = 1.241(18), and δ = 4.585(20). Their values are close to those of a 3D Heisenberg ferromagnet. The temperature dependence of the magnetic susceptibility above TC follows the modified Curie–Weiss law with a paramagnetic Curie…

MagnetizationCurie–Weiss lawFerromagnetismCondensed matter physicsMagnetic momentChemistryCurie temperatureGeneral Materials ScienceCondensed Matter PhysicsHyperfine structureSpontaneous magnetizationMagnetic susceptibilityJournal of Physics: Condensed Matter
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