Suppression of Magnetic Order by Pressure in BaFe2As2
arXiv:0808.0718 · doi:10.1143/JPSJ.77.105004
Abstract
We performed the dc resistivity and the ZF 75As-NMR measurement of BaFe2As2 under high pressure. The T-P phase diagram of BaFe2As2 determined from resistivity anomalies and the ZF 75As-NMR clearly revealed that the SDW anomaly is quite robust against P.
2 pages, 2 figures
References in corpus (4)
Cited by in corpus (20)
- High-temperature superconductivity in iron-based materials
- To What Extent Iron-Pnictide New Superconductors Have Been Clarified: A Progress Report
- Superconductivity under high pressure in LaFeAsO
- Electronic Structure of Fe-Based Superconductors
- EuFeAs under high pressure: an antiferromagnetic bulk superconductor
- Abrupt Emergence of Pressure-Induced Superconductivity of 34 K in SrFe2As2: A Resistivity Study under Pressure
- Extremely high sensitivity to uniaxial stress in pressure induced superconductivity of BaFe2As2
- 75As NMR Study of Hole-Doped Superconductor Ba1-xKxFe2As2 (Tc = 38K)
- Feshbach resonances and mesoscopic phase separation near a quantum critical point in multiband FeAs-based superconductors
- Antiferromagnetism of SrFe2As2 studied by Single-Crystal 75As-NMR
- Pressure-induced superconductivity in Iron pnictide compound SrFe2As2
- Presure-Induced Superconducting State of Antiferromagnetic CaFeAs
- Microscopic origin of pressure-induced phase transitions in iron-pnictide superconductors: an {ab initio} molecular-dynamics study
- Pressure shift of the superconducting T_c of LiFeAs
- Pressure effects on the electron-doped high Tc superconductor BaFe(2-x)Co(x)As(2)
- Pressure versus concentration tuning of the superconductivity in Ba(Fe(1-x)Cox)2As2
- The Electronic Phase Diagram of the Iron-based High Tc Superconductor Ba(Fe(1-x)Co(x))2As2 Under Hydrostatic Pressure (0 < x <0.099)
- First-principles investigation of effect of pressure on BaFeAs
- Critical Slowing Down of Quadrupole and Hexadecapole Orderings in Iron Pnictide Superconductor
- Pressure-Induced Structural and Magnetic Evolution in Layered Antiferromagnet YbMnSb