The crystal and magnetic structures of Fe1.087Te have been studied by neutron powder diffraction in the temperature range from 1.7 to 80 K at pressures of ≈0.4 and ≈1.2 GPa. No symmetry change of the tetragonal paramagnetic ambient pressure phase (space group P4/nmm) was observed for temperatures above 60 K and pressures up to ≈1.2 GPa. A novel pressure-induced phase of Fe1.087Te having orthorhombic symmetry (space group Pmmn) and incommensurate antiferromagnetic bicollinear order was observed in the temperature range from 50 to 60 K at ≈1.2 GPa. The known monoclinic ambient pressure phase of Fe1.087Te (space group P21/n) with commensurate antife...
The parent compound of iron chalcogenide superconductors, Fe1+yTe, with a range of excess Fe concent...
An investigation of Fe7Se8 was undertaken to study the magnetic ordering and phase transitions in th...
The parent compound of iron chalcogenide superconductors, Fe1+yTe, with a range of excess Fe concent...
The crystal and magnetic structures of Fe1.087Te have been studied by neutron powder diffraction ...
By performing resistivity, bulk susceptibility and neutron diffraction on single crystals of Fe 1.02...
By performing resistivity, bulk susceptibility and neutron diffraction on single crystals of Fe1.02S...
The physical and structural properties of Fe1.11Te and Fe1.11Te0.5Se0.5 have been investigated by me...
We investigate the pressure phase diagram of FeTe, predicting structural and magnetic properties in ...
Through neutron diffraction experiments, including spin-polarized measurements, we find a collinear ...
Specific heat, resistivity, magnetic susceptibility, linear thermal expansion (LTE), and high-resolu...
We construct a phase diagram of the parent compound Fe1+xTe as a function of interstitial iron x in ...
We studied magnetic order in EuTe by neutron diffraction under applied pressures up to 17 GPa. In t...
The novel iron-based compound, BaYFeO\u2084, crystallizes in the Pnma space group with two distinct ...
The physical and structural properties of Fe1.11Te and Fe1.11Te0.5Se0.5 have been investigated by me...
The View the MathML source to View the MathML source cation-ordering phase transition in the ilmenit...
The parent compound of iron chalcogenide superconductors, Fe1+yTe, with a range of excess Fe concent...
An investigation of Fe7Se8 was undertaken to study the magnetic ordering and phase transitions in th...
The parent compound of iron chalcogenide superconductors, Fe1+yTe, with a range of excess Fe concent...
The crystal and magnetic structures of Fe1.087Te have been studied by neutron powder diffraction ...
By performing resistivity, bulk susceptibility and neutron diffraction on single crystals of Fe 1.02...
By performing resistivity, bulk susceptibility and neutron diffraction on single crystals of Fe1.02S...
The physical and structural properties of Fe1.11Te and Fe1.11Te0.5Se0.5 have been investigated by me...
We investigate the pressure phase diagram of FeTe, predicting structural and magnetic properties in ...
Through neutron diffraction experiments, including spin-polarized measurements, we find a collinear ...
Specific heat, resistivity, magnetic susceptibility, linear thermal expansion (LTE), and high-resolu...
We construct a phase diagram of the parent compound Fe1+xTe as a function of interstitial iron x in ...
We studied magnetic order in EuTe by neutron diffraction under applied pressures up to 17 GPa. In t...
The novel iron-based compound, BaYFeO\u2084, crystallizes in the Pnma space group with two distinct ...
The physical and structural properties of Fe1.11Te and Fe1.11Te0.5Se0.5 have been investigated by me...
The View the MathML source to View the MathML source cation-ordering phase transition in the ilmenit...
The parent compound of iron chalcogenide superconductors, Fe1+yTe, with a range of excess Fe concent...
An investigation of Fe7Se8 was undertaken to study the magnetic ordering and phase transitions in th...
The parent compound of iron chalcogenide superconductors, Fe1+yTe, with a range of excess Fe concent...