The reversible metal-insulator transition in VO2 at TC = 340 K has been closely scrutinized yet its thermodynamic origin remains ambiguous. We discuss the origin of the transition entropy by calculating the electron and phonon contributions at TC using density functional theory. The vibration frequencies are obtained from harmonic phonon calculations, with the soft modes that are imaginary at zero temperature renormalized to real values at TC using experimental information from diffuse x-ray scattering at high-symmetry wavevectors. Gaussian Process Regression is used to infer the transformed frequencies for wavevectors across the whole Brillouin zone, and in turn compute the finite temperature phonon partition function to predict tra...
We report the results of pressure-induced phase transitions and metallization in VO2 based on synchr...
An orbital-selective technique, nuclear magnetic resonance (NMR) spectroscopy, which could simultane...
Vanadium dioxide is an unusual material that undergoes a first-order Metal–Insulator Transition (MIT...
The reversible metal-insulator transition in VO2 at TC = 340 K has been closely scrutinized yet its...
VO₂ experiences a metal-insulator transition at 340 K. Discontinuities in electronic transport prope...
Upon cooling past a critical temperature Tc = 340 K Vanadium dioxide (VO2) exhibits a metal-insulato...
Predicting the temperature-strain phase diagram of VO$_2$, including the various structural allotrop...
The physics of transition-metal oxides presents a challenge to our current understanding of condense...
The structural phase transition (SPT) and metal-insulator phase transition (MIT) always occur simult...
We compare various calculation methods to determine the electronic structures and energy differences...
Vanadium dioxide is one of the most studied strongly correlated materials. Nonetheless, the intertwi...
International audienceThe mechanism of the displacive phase transition in VO2 near the transition te...
The phonon density-of-states (DOS) of elemental vanadium was measured at elevated temperatures by in...
VO2 is a well-known strongly correlated system which exhibits an intriguing metal-insulator transiti...
We compare various calculation methods to determine the electronic structures and energy differences...
We report the results of pressure-induced phase transitions and metallization in VO2 based on synchr...
An orbital-selective technique, nuclear magnetic resonance (NMR) spectroscopy, which could simultane...
Vanadium dioxide is an unusual material that undergoes a first-order Metal–Insulator Transition (MIT...
The reversible metal-insulator transition in VO2 at TC = 340 K has been closely scrutinized yet its...
VO₂ experiences a metal-insulator transition at 340 K. Discontinuities in electronic transport prope...
Upon cooling past a critical temperature Tc = 340 K Vanadium dioxide (VO2) exhibits a metal-insulato...
Predicting the temperature-strain phase diagram of VO$_2$, including the various structural allotrop...
The physics of transition-metal oxides presents a challenge to our current understanding of condense...
The structural phase transition (SPT) and metal-insulator phase transition (MIT) always occur simult...
We compare various calculation methods to determine the electronic structures and energy differences...
Vanadium dioxide is one of the most studied strongly correlated materials. Nonetheless, the intertwi...
International audienceThe mechanism of the displacive phase transition in VO2 near the transition te...
The phonon density-of-states (DOS) of elemental vanadium was measured at elevated temperatures by in...
VO2 is a well-known strongly correlated system which exhibits an intriguing metal-insulator transiti...
We compare various calculation methods to determine the electronic structures and energy differences...
We report the results of pressure-induced phase transitions and metallization in VO2 based on synchr...
An orbital-selective technique, nuclear magnetic resonance (NMR) spectroscopy, which could simultane...
Vanadium dioxide is an unusual material that undergoes a first-order Metal–Insulator Transition (MIT...