The structural, electronic, and magnetic properties of rhombohedral La0.625Sr0.375MnO3 under high hydrostatic pressure are investigated from first-principles density-functional calculations. We employ three different levels of approach: the generalized-gradient approximation (GGA), the GGA+U, and the pseudo-self-interaction correction (PSIC). All methods coherently indicate an enhancement of antiferromagnetic coupling as compression is applied, i.e., contrary to naive expectations, double exchange is not enhanced but weakened as Mn-O distances shorten. This is due to the increasing electrostatic repulsion and electron localization. On the other hand, Jahn-Teller distortions are minimal and symmetry remains roughly rhombohedral even at high ...
We present a detailed study on the effects of applied hydrostatic pressure on the magnetoresistance ...
Pressure effects on magnetic properties of two La0.7Ca0.3MnO3 nanoparticle samples with different me...
Complex oxides such as the manganites exhibit an intimate coupling of the electron spin, charge and ...
By means of hybrid density functional theory we investigate the evolution of the structural, electro...
The structural, electronic, and magnetic properties of La0.625Sr0.375MnO3 under planar and orthogona...
Pressure effects on the electronic, magnetic properties and structure of several typical colossal ma...
We study the influence of external pressure on the electronic and magnetic structure of EuMnO3 from...
9 pages, 14 figuresIn this work, we present first principles density functional study of magnetism a...
[[abstract]]The effects of external (hydrostatic) pressure and internal (chemical) pressure on the t...
We study the influence of external pressure on the electronic and magnetic structure of EuMnO3 from ...
Measurements of the thermal expansion of a single crystal of La0.835Sr0.165MnO3 were performed under...
The crystal structure of the layered perovskite La{sub 1.2}Sr{sub 1.8}Mn{sub 2}O{sub 7} has been stu...
In our paper we present effect of pressure on magnetic properties of La0.85Ag0.15MnO3 nanopowders pr...
The effect of high pressure (0 – 8 GPa) on the magnetic structure of polycrystalline samples of La0....
The interplay among magnetism, charge mobility and structure in manganese oxide perovskites present ...
We present a detailed study on the effects of applied hydrostatic pressure on the magnetoresistance ...
Pressure effects on magnetic properties of two La0.7Ca0.3MnO3 nanoparticle samples with different me...
Complex oxides such as the manganites exhibit an intimate coupling of the electron spin, charge and ...
By means of hybrid density functional theory we investigate the evolution of the structural, electro...
The structural, electronic, and magnetic properties of La0.625Sr0.375MnO3 under planar and orthogona...
Pressure effects on the electronic, magnetic properties and structure of several typical colossal ma...
We study the influence of external pressure on the electronic and magnetic structure of EuMnO3 from...
9 pages, 14 figuresIn this work, we present first principles density functional study of magnetism a...
[[abstract]]The effects of external (hydrostatic) pressure and internal (chemical) pressure on the t...
We study the influence of external pressure on the electronic and magnetic structure of EuMnO3 from ...
Measurements of the thermal expansion of a single crystal of La0.835Sr0.165MnO3 were performed under...
The crystal structure of the layered perovskite La{sub 1.2}Sr{sub 1.8}Mn{sub 2}O{sub 7} has been stu...
In our paper we present effect of pressure on magnetic properties of La0.85Ag0.15MnO3 nanopowders pr...
The effect of high pressure (0 – 8 GPa) on the magnetic structure of polycrystalline samples of La0....
The interplay among magnetism, charge mobility and structure in manganese oxide perovskites present ...
We present a detailed study on the effects of applied hydrostatic pressure on the magnetoresistance ...
Pressure effects on magnetic properties of two La0.7Ca0.3MnO3 nanoparticle samples with different me...
Complex oxides such as the manganites exhibit an intimate coupling of the electron spin, charge and ...