The compound CuTe (vulcanite) undergoes a quasi one dimensional charge density wave (CDW) at $T< T_{\mathrm{CDW}}=335$ K with a $5\times1\times2$ periodicity. The mechanism at its origin is debated. Several theoretical works claimed that semilocal functionals are unable to describe its occurrence and ascribed its formation only to strong electron-electron interaction. Moreover, the possible role of quantum anharmonicity has not been addressed. Here, by performing quantum anharmonic calculations, we show that semilocal functionals correctly describe the occurrence of a CDW in CuTe if ultradense electron momentum grids allowing for small electronic temperatures are used. The distortion is driven by the perfect nesting among 1D Fermi surface s...
The presence of electron correlations in a system with topological order can lead to exotic ground s...
Using time- and angle-resolved photoemission spectroscopy with selective near- and midinfrared photo...
A hallmark of strongly correlated quantum materials is the rich phase diagram resulting from competi...
The compound CuTe (vulcanite) undergoes a quasi one dimensional charge density wave (CDW) at $T< T_{...
The study of neutral electronic excitations directly probed by electron energy loss spectroscopy exp...
peer reviewedThe study of neutral electronic excitations directly probed by electron energy loss spe...
We report the electronic structure of CuTe with a high charge density wave (CDW) transition temperat...
We report the electronic structure of CuTe with a high charge density wave (CDW) transition temperat...
We investigate the controversial case of charge-density-wave (CDW) order in single layer 1T-TiSe$_2$...
Most metallic transition metal dichalcogenides undergo charge density wave (CDW) instabilities with ...
The Holstein Hamiltonian describes itinerant electrons whose site density couples to local phonon de...
Most metallic transition metal dichalcogenides undergo charge density wave (CDW) instabilities with ...
Understanding of charge-density wave (CDW) phases is a main challenge in condensed matter due to the...
Using time- and angle-resolved photoemission spectroscopy with selective near- and midinfrared photo...
Understanding of charge-density wave (CDW) phases is a main challenge in condensed matter due to the...
The presence of electron correlations in a system with topological order can lead to exotic ground s...
Using time- and angle-resolved photoemission spectroscopy with selective near- and midinfrared photo...
A hallmark of strongly correlated quantum materials is the rich phase diagram resulting from competi...
The compound CuTe (vulcanite) undergoes a quasi one dimensional charge density wave (CDW) at $T< T_{...
The study of neutral electronic excitations directly probed by electron energy loss spectroscopy exp...
peer reviewedThe study of neutral electronic excitations directly probed by electron energy loss spe...
We report the electronic structure of CuTe with a high charge density wave (CDW) transition temperat...
We report the electronic structure of CuTe with a high charge density wave (CDW) transition temperat...
We investigate the controversial case of charge-density-wave (CDW) order in single layer 1T-TiSe$_2$...
Most metallic transition metal dichalcogenides undergo charge density wave (CDW) instabilities with ...
The Holstein Hamiltonian describes itinerant electrons whose site density couples to local phonon de...
Most metallic transition metal dichalcogenides undergo charge density wave (CDW) instabilities with ...
Understanding of charge-density wave (CDW) phases is a main challenge in condensed matter due to the...
Using time- and angle-resolved photoemission spectroscopy with selective near- and midinfrared photo...
Understanding of charge-density wave (CDW) phases is a main challenge in condensed matter due to the...
The presence of electron correlations in a system with topological order can lead to exotic ground s...
Using time- and angle-resolved photoemission spectroscopy with selective near- and midinfrared photo...
A hallmark of strongly correlated quantum materials is the rich phase diagram resulting from competi...