Tin selenide is a layered material that captured the interest of the scientific community for its stunning thermoelectric properties and fascinating phase transitions under pressure. Recently, an experimental study revealed the existence of a topological and superconducting phase in its pressure-stabilized CsCl-type phase. By means of ab initio techniques, we investigate the structural properties of this compound and its pressure phase diagram, comparing our findings with the experimental results. We then focused on the electronic features of the topological CsCl-type phase and analyze its dynamical and superconducting properties. To understand the origin of the superconducting transition, we predict the critical temperature as a function o...
Elemental sulfur shows a superconducting phase at high pressure (above 100 GPa), with critical tempe...
Elemental sulfur shows a superconducting phase at high pressure (above 100 GPa), with critical tempe...
We study the electronic structure of iron-based superconductors $FeSe_{1-x}Te_x$ within the density ...
Tin selenide is a layered material that captured the interest of the scientific community for its st...
Abstract The high pressure band structure, density of states, metallization, structural phase transi...
The coexistence of superconductivity and topology holds the potential to realize exotic quantum stat...
Due to its low atomic mass, hydrogen is the most promising element to search for hightemperature pho...
Due to its low atomic mass, hydrogen is the most promising element to search for hightemperature pho...
Non-trivial electronic properties of silver telluride and other chalcogenides, such as the presence ...
Non-trivial electronic properties of silver telluride and other chalcogenides, such as the presence ...
AbstractThe pressure-induced phase transitions in SnSe have been investigated using the first-princi...
SnxSey crystalline compounds consisting of Sn and Se atoms of varying compositions are systematicall...
The interplay between superconductivity and the charge-density wave (CDW) state in pure 1T-TiSe2 is ...
Topological superconductivity is one of most fascinating properties of topological quantum matters t...
First-principles calculations are performed for electronic structures of two high-pressure phases of...
Elemental sulfur shows a superconducting phase at high pressure (above 100 GPa), with critical tempe...
Elemental sulfur shows a superconducting phase at high pressure (above 100 GPa), with critical tempe...
We study the electronic structure of iron-based superconductors $FeSe_{1-x}Te_x$ within the density ...
Tin selenide is a layered material that captured the interest of the scientific community for its st...
Abstract The high pressure band structure, density of states, metallization, structural phase transi...
The coexistence of superconductivity and topology holds the potential to realize exotic quantum stat...
Due to its low atomic mass, hydrogen is the most promising element to search for hightemperature pho...
Due to its low atomic mass, hydrogen is the most promising element to search for hightemperature pho...
Non-trivial electronic properties of silver telluride and other chalcogenides, such as the presence ...
Non-trivial electronic properties of silver telluride and other chalcogenides, such as the presence ...
AbstractThe pressure-induced phase transitions in SnSe have been investigated using the first-princi...
SnxSey crystalline compounds consisting of Sn and Se atoms of varying compositions are systematicall...
The interplay between superconductivity and the charge-density wave (CDW) state in pure 1T-TiSe2 is ...
Topological superconductivity is one of most fascinating properties of topological quantum matters t...
First-principles calculations are performed for electronic structures of two high-pressure phases of...
Elemental sulfur shows a superconducting phase at high pressure (above 100 GPa), with critical tempe...
Elemental sulfur shows a superconducting phase at high pressure (above 100 GPa), with critical tempe...
We study the electronic structure of iron-based superconductors $FeSe_{1-x}Te_x$ within the density ...