A combination of state-of-the-art theoretical methods has been used to obtain an atomic-level picture of classical and quantum ordering of protons in cold high-pressure solid hydrogen. We focus mostly on phases II and III of hydrogen, exploring the effects of quantum nuclear motion on certain features of these phases (through a number of ab initio path integral molecular dynamics (PIMD) simulations at particular points on the phase diagram). We also examine the importance of van der Waals forces in this system by performing calculations using the optB88-vdW density functional, which accounts for non-local correlations. Our calculations reveal that the transition between phases I and II is strongly quantum in nature, resulting from a competi...
El pdf es la versión pre-print: arXiv:1303.2178Hydrogen is the most abundant element in the universe...
We investigate the van der Waals interactions in solid molecular hydrogen structures. We calculate e...
We reassess the phase diagram of high-pressure solid hydrogen using mean-field and many-body wave fu...
A combination of state-of-the-art theoretical methods has been used to obtain an atomic-level pictur...
Variational and Diffusion Monte Carlo are powerful computational methods which can afford accurate e...
We present an accurate computational study of the electronic structure and lattice dynamics of solid...
Establishing the phase diagram of hydrogen is a major challenge for experimental and theoretical phy...
Water ice is a unique material, presenting the most complex phase diagram known in the literature, r...
International audienceThe high-pressure II-III phase transition in solid hydrogen is investigated us...
Hydrogen, being the first element in the periodic table, has the simplest electronic structure of an...
Production of metallic hydrogen is one of the top three open quests of physics[1]. Three different e...
Studies of the structure of hydroxides under pressure using neutron diffraction reveal that the high...
We use the diffusion quantum Monte Carlo (DMC) method to calculate the ground-state phase diagram of...
The high-pressure II-III phase transition in solid hydrogen is investigated using the random phase a...
The metallization of high-pressure hydrogen, together with the associated molecular to atomic transi...
El pdf es la versión pre-print: arXiv:1303.2178Hydrogen is the most abundant element in the universe...
We investigate the van der Waals interactions in solid molecular hydrogen structures. We calculate e...
We reassess the phase diagram of high-pressure solid hydrogen using mean-field and many-body wave fu...
A combination of state-of-the-art theoretical methods has been used to obtain an atomic-level pictur...
Variational and Diffusion Monte Carlo are powerful computational methods which can afford accurate e...
We present an accurate computational study of the electronic structure and lattice dynamics of solid...
Establishing the phase diagram of hydrogen is a major challenge for experimental and theoretical phy...
Water ice is a unique material, presenting the most complex phase diagram known in the literature, r...
International audienceThe high-pressure II-III phase transition in solid hydrogen is investigated us...
Hydrogen, being the first element in the periodic table, has the simplest electronic structure of an...
Production of metallic hydrogen is one of the top three open quests of physics[1]. Three different e...
Studies of the structure of hydroxides under pressure using neutron diffraction reveal that the high...
We use the diffusion quantum Monte Carlo (DMC) method to calculate the ground-state phase diagram of...
The high-pressure II-III phase transition in solid hydrogen is investigated using the random phase a...
The metallization of high-pressure hydrogen, together with the associated molecular to atomic transi...
El pdf es la versión pre-print: arXiv:1303.2178Hydrogen is the most abundant element in the universe...
We investigate the van der Waals interactions in solid molecular hydrogen structures. We calculate e...
We reassess the phase diagram of high-pressure solid hydrogen using mean-field and many-body wave fu...