We present first-principles density-functional-theory-based calculations to determine the effects of the strength of on-site electron correlation, magnetic ordering, pressure and Se vacancies on phonon frequencies and electronic structure of FeSe1-x. The theoretical equilibrium structure (lattice parameters) of FeSe depends sensitively on the value of the Hubbard parameter U of on-site correlation and magnetic ordering. Our results suggest that there is a competition between different antiferromagnetic states due to comparable magnetic exchange couplings between first- and second-neighbor Fe sites. As a result, a short range order of stripe antiferromagnetic type is shown to be relevant to the normal state of FeSe at low temperature. We sho...
We report an investigation of the lattice dynamical properties in a range of Fe$_{1+y}$Te$_{1-x}$Se$...
The temperature and pressure dependence of the partial density of phonon states (phonon-DOS) of iron...
We investigate the pressure phase diagram of FeTe, predicting structural and magnetic properties in ...
We present first-principles density-functional-theory-based calculations to determine the effects of...
We report first-principles density-functional theory results on the electronic and magnetic properti...
We report first-principles density-functional theory results on the electronic and magnetic properti...
We report first-principles density-functional theory results on the electronic and magnetic propert...
International audienceWe report on an investigation of the lattice dynamical properties in a range o...
International audienceWe report on an investigation of the lattice dynamical properties in a range o...
We report interesting anomalies in the temperature dependent Raman spectra of FeSe0.82 measured from...
© 2018 American Physical Society. The magnetic specific heat of RbFeSe2 and the spin state of Fe3+ i...
We present results of a detailed theoretical study of the electronic, magnetic, and structural prope...
Resolving the interplay between magnetic interactions and structural properties in strongly correlat...
We investigate the pressure phase diagram of FeTe, predicting structural and magnetic properties in ...
We report a detailed theoretical study of the electronic structure, spectral properties, and lattice...
We report an investigation of the lattice dynamical properties in a range of Fe$_{1+y}$Te$_{1-x}$Se$...
The temperature and pressure dependence of the partial density of phonon states (phonon-DOS) of iron...
We investigate the pressure phase diagram of FeTe, predicting structural and magnetic properties in ...
We present first-principles density-functional-theory-based calculations to determine the effects of...
We report first-principles density-functional theory results on the electronic and magnetic properti...
We report first-principles density-functional theory results on the electronic and magnetic properti...
We report first-principles density-functional theory results on the electronic and magnetic propert...
International audienceWe report on an investigation of the lattice dynamical properties in a range o...
International audienceWe report on an investigation of the lattice dynamical properties in a range o...
We report interesting anomalies in the temperature dependent Raman spectra of FeSe0.82 measured from...
© 2018 American Physical Society. The magnetic specific heat of RbFeSe2 and the spin state of Fe3+ i...
We present results of a detailed theoretical study of the electronic, magnetic, and structural prope...
Resolving the interplay between magnetic interactions and structural properties in strongly correlat...
We investigate the pressure phase diagram of FeTe, predicting structural and magnetic properties in ...
We report a detailed theoretical study of the electronic structure, spectral properties, and lattice...
We report an investigation of the lattice dynamical properties in a range of Fe$_{1+y}$Te$_{1-x}$Se$...
The temperature and pressure dependence of the partial density of phonon states (phonon-DOS) of iron...
We investigate the pressure phase diagram of FeTe, predicting structural and magnetic properties in ...