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Polarons in materials
Polarons are quasiparticles that easily form in polarizable materials due to the coupling of
excess electrons or holes with ionic vibrations. These quasiparticles manifest themselves in …
excess electrons or holes with ionic vibrations. These quasiparticles manifest themselves in …
Magnetic small-angle neutron scattering
Small-angle neutron scattering (SANS) is one of the most important techniques for
microstructure determination, being utilized in a wide range of scientific disciplines, such as …
microstructure determination, being utilized in a wide range of scientific disciplines, such as …
Exploring the optoelectronic attributes, thermoelectric and photocatalytic potential of double perovskites Cs2BB'H6 (B= Al, Na and B'= Tl, In): A DFT study
Abstract Double perovskites Cs 2 BB'H 6 (B= Al, Na and B'= Tl, In) have been scrutinized by
employing density functional theory to calculate their electronic structures, thermodynamic …
employing density functional theory to calculate their electronic structures, thermodynamic …
Half-metallic and thermoelectric properties of Sr2EuReO6
S Berri - Computational Condensed Matter, 2021 - Elsevier
Structural parameters, electronic band structure, half-metallic and thermoelectric properties
of Sr 2 EuReO 6 compound materials are investigated. The computations are performed …
of Sr 2 EuReO 6 compound materials are investigated. The computations are performed …
Imaging magnetic polarons in the doped Fermi–Hubbard model
Polarons—electronic charge carriers 'dressed'by a local polarization of the background
environment—are among the most fundamental quasiparticles in interacting many-body …
environment—are among the most fundamental quasiparticles in interacting many-body …
Repulsive Fermi Polarons in a Resonant Mixture of Ultracold Atoms
We employ radio-frequency spectroscopy to investigate a polarized spin mixture of ultracold
Li 6 atoms close to a broad Feshbach scattering resonance. Focusing on the regime of …
Li 6 atoms close to a broad Feshbach scattering resonance. Focusing on the regime of …
Colossal magnetoresistant materials: the key role of phase separation
E Dagotto, T Hotta, A Moreo - Physics reports, 2001 - Elsevier
The study of the manganese oxides, widely known as manganites, that exhibit the “colossal”
magnetoresistance effect is among the main areas of research within the area of strongly …
magnetoresistance effect is among the main areas of research within the area of strongly …
Direct evidence for a half-metallic ferromagnet
Half-metallic materials are characterized by the coexistence of metallic behaviour for one
electron spin and insulating behaviour for the other. Thus, the electronic density of states is …
electron spin and insulating behaviour for the other. Thus, the electronic density of states is …
Percolative phase separation underlies colossal magnetoresistance in mixed-valent manganites
Colossal magnetoresistance—an unusually large change of resistivity observed in certain
materials following application of magnetic field—has been extensively researched in …
materials following application of magnetic field—has been extensively researched in …
[BOK][B] Nanoscale phase separation and colossal magnetoresistance: the physics of manganites and related compounds
E Dagotto - 2003 - books.google.com
Condensed matter is one of the most active areas of research in physics. Ev ery year new
materials are discovered with properties that are as challenging as or more than those of the …
materials are discovered with properties that are as challenging as or more than those of the …