Synthesis, magnetization and magneto transport study of RECoPO (RE = La, Nd & Sm)
arXiv:1105.0971 · doi:10.1063/1.3662151
Abstract
We report the electrical, magneto transport and specific heat of the layered polycrystalline RECoPO (RE = La, Nd and Sm) samples. These compounds are iso-structural to recently discovered superconductor LaFeAs(O/F). Bulk polycrystalline samples are synthesized by solid state reaction route in an evacuated sealed quartz tube. All these compounds are crystallized in a tetragonal structure with space group P4/nmm. The Cobalt in these compounds is in itinerant state with its paramagnetic moment above 1.4\muB and the same orders ferromagnetically (FM) with saturation moment of around 0.20\muB below say 80K. Though, LaCoPO shows single paramagnetic (PM) to ferromagnetic (FM) transition near 35K, the NdCoPO and SmCoPO exhibit successive PM-FM-AFM transitions. Both FM and AFM transition temperatures vary with applied field. Although the itinerant ferromagnetism occurs with small saturation moment, typical anti-ferromagnetic (AFM) transitions (TN1, TN2) are observed at 69K and 14K for Nd and 57K and 45K for Sm. This FM-AFM transition of Co spins in NdCoPO and SmCoPO is both field and temperature dependent. The Magneto-transport of NdCoPO and SmCoPO distinctly follows their successive PM-FM-AFM transitions. It is clear that Sm/Nd (4f) interacts with the Co (3d) in first time synthesized Sm/NdCoPO.
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References in corpus (5)
Cited by in corpus (9)
- Common effect of chemical and external pressures on the magnetic properties of RECoPO (RE = La, Pr)
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- Magnetic phase diagram in the Co-rich side of LnCo1-xFexAsO (Ln=La, Sm) system
- Anisotropic spin-fluctuations in SmCoPO revealed by 31^P NMR measurement
- Structural, micro-structural/morphological and magnetic properties of RECrO3 (RE = La, Nd, Sm, Eu and Gd) Orthocromites
- Common effect of chemical and external pressures on the magnetic properties of CoPO ( = La, Pr, Nd, Sm). II
- Tuning the magnetocrystalline anisotropy in CoPO by means of substitution: a ferromagnetic resonance study
- Evolution of superconductivity in PrFe1-xCoxAsO with x = 0.0 to 1.0
- Effect of external pressure on the magnetic properties of CoAsO ( = La, Pr, Sm): a SR study