The crystal structure of CrAs was investigated using synchrotron X-ray single-crystal diffraction for separate dependences on temperature (30–400 K) and on pressure (0–9.46 GPa). The isosymmetrical magnetostructural phase transition at T$_N$ = 267 K can induce a change in the microstructure by twinning due to a crossing of the orthohexagonal setting of the unit-cell parameter ratio c/b. Within the crystal structure, one particular Cr–Cr distance exhibits anomalous behavior in that it is nearly unaffected by temperature and pressure in the paramagnetic phase, which is stable above 267 K and at high pressures. The distinction of this shortest Cr–Cr distance might be of importance for the superconducting properties of CrAs
Unlike the ferropnictide superconductors, which crystallize in a tetragonal crystal structure, binar...
The magnetic structure of the rhombohedral variety of Cr2S 3 (a = 5.94 Å; c = 16.7 Å; group R3) has ...
Magnetic and structural properties of CrAs epilayers grown on GaAs(001) by molecular beam epitaxy ha...
The crystal structure of CrAs was investigated using synchrotron X-ray single-crystal diffraction fo...
Chromium Arsenide (CrAs) is the first Cr-based superconductor, exhibiting pressure-induced supercond...
In the ongoing and wide-ranging efforts to understand superconductivity and its interplay with magne...
Chromium Arsenide (CrAs) is the first reported Cr-based superconductor, exhibiting superconductivity...
Chromium arsenide CrAs (Pnma, Z = 4) is studied with synchrotron single-crystal diffraction in diamo...
© 2015, NPG. All rights reserved. The recent discovery of pressure (p) induced superconductivity in ...
We report resistivity measurements of a CrAs single crystal in a wide temperature range, with the sp...
We report NMR spectrum analysis for CrAs, which was recently reported to be superconducting under pr...
Studies on X-ray crystallographic, magnetic, neutron diffraction and transport properties have been ...
At ambient pressure, CrAs undergoes a first-order transition into a double-helical magnetic state at...
In La-Cr-As system, the first ternary compound La3CrAs5 has been successfully synthesized under high...
The suppression of magnetic order with pressure concomitant with the appearance of pressure-induced ...
Unlike the ferropnictide superconductors, which crystallize in a tetragonal crystal structure, binar...
The magnetic structure of the rhombohedral variety of Cr2S 3 (a = 5.94 Å; c = 16.7 Å; group R3) has ...
Magnetic and structural properties of CrAs epilayers grown on GaAs(001) by molecular beam epitaxy ha...
The crystal structure of CrAs was investigated using synchrotron X-ray single-crystal diffraction fo...
Chromium Arsenide (CrAs) is the first Cr-based superconductor, exhibiting pressure-induced supercond...
In the ongoing and wide-ranging efforts to understand superconductivity and its interplay with magne...
Chromium Arsenide (CrAs) is the first reported Cr-based superconductor, exhibiting superconductivity...
Chromium arsenide CrAs (Pnma, Z = 4) is studied with synchrotron single-crystal diffraction in diamo...
© 2015, NPG. All rights reserved. The recent discovery of pressure (p) induced superconductivity in ...
We report resistivity measurements of a CrAs single crystal in a wide temperature range, with the sp...
We report NMR spectrum analysis for CrAs, which was recently reported to be superconducting under pr...
Studies on X-ray crystallographic, magnetic, neutron diffraction and transport properties have been ...
At ambient pressure, CrAs undergoes a first-order transition into a double-helical magnetic state at...
In La-Cr-As system, the first ternary compound La3CrAs5 has been successfully synthesized under high...
The suppression of magnetic order with pressure concomitant with the appearance of pressure-induced ...
Unlike the ferropnictide superconductors, which crystallize in a tetragonal crystal structure, binar...
The magnetic structure of the rhombohedral variety of Cr2S 3 (a = 5.94 Å; c = 16.7 Å; group R3) has ...
Magnetic and structural properties of CrAs epilayers grown on GaAs(001) by molecular beam epitaxy ha...