Extreme pressure strongly affects the superconducting properties of "simple" elemental metals, such as Li, K, and Al. Pressure induces superconductivity in Li (as high as 17 K) while suppressing it in Al. We report first-principles investigations of the superconducting properties of dense Li, K, and Al based on a recently proposed, parameter-free, method. Our results show an unprecedented agreement with experiments, assess the predictive power of the method over a wide range of densities and electron-phonon couplings, and provide predictions for K, where no experiments exist so far. More importantly, our results help uncover the physics of the different behaviors of Li and Al in terms of phonon softening and Fermi surface nesting in Li
A series of recent x-ray diffraction experiments carried out by scientists from the Max-Planck-Insti...
At ambient conditions, lithium and sodium behave as free-electron metals and adopt highly symmetric ...
Recently reported structural complexity and enhanced temperature superconducting transitions in lith...
Extreme pressure strongly affects the superconducting properties of "simple" elemental metals, such ...
Extreme pressure strongly affects the superconducting properties of "simple" elemental metals, such ...
Extreme pressure strongly affects the superconducting properties of “simple” elemental metals, such ...
We report first principles calculations of the superconducting properties of fcc potassium under hig...
We report first principles calculations of the superconducting properties of fcc potassium under hig...
none10siWe report first principles calculations of the superconducting properties of fcc potassium u...
We report first principles calculations of the superconducting properties of fcc potassium under hig...
We report first principles calculations of the superconducting properties of fcc potassium under hig...
We report first principles calculations of the superconducting properties of fcc potassium under hig...
Structural phase transitions and superconducting properties in three phases (9R, fcc, and cI16) of s...
The prospect of precisely predicting the behavior of solids entirely by means of theory and computat...
The superconducting phase of several elemental solids under ambient (p-doped diamond) and high press...
A series of recent x-ray diffraction experiments carried out by scientists from the Max-Planck-Insti...
At ambient conditions, lithium and sodium behave as free-electron metals and adopt highly symmetric ...
Recently reported structural complexity and enhanced temperature superconducting transitions in lith...
Extreme pressure strongly affects the superconducting properties of "simple" elemental metals, such ...
Extreme pressure strongly affects the superconducting properties of "simple" elemental metals, such ...
Extreme pressure strongly affects the superconducting properties of “simple” elemental metals, such ...
We report first principles calculations of the superconducting properties of fcc potassium under hig...
We report first principles calculations of the superconducting properties of fcc potassium under hig...
none10siWe report first principles calculations of the superconducting properties of fcc potassium u...
We report first principles calculations of the superconducting properties of fcc potassium under hig...
We report first principles calculations of the superconducting properties of fcc potassium under hig...
We report first principles calculations of the superconducting properties of fcc potassium under hig...
Structural phase transitions and superconducting properties in three phases (9R, fcc, and cI16) of s...
The prospect of precisely predicting the behavior of solids entirely by means of theory and computat...
The superconducting phase of several elemental solids under ambient (p-doped diamond) and high press...
A series of recent x-ray diffraction experiments carried out by scientists from the Max-Planck-Insti...
At ambient conditions, lithium and sodium behave as free-electron metals and adopt highly symmetric ...
Recently reported structural complexity and enhanced temperature superconducting transitions in lith...