The high-pressure phase transition and the metallization of Ar(H2)2 are investigated using first-principles methods. A phase transition from the experimentally observed MgZn2 structure to a CeCu2-type structure is predicted near 66 GPa. This phase transition provides a possible explanation for the disappearance of the Raman active vibron mode in experiment between 55 and 70 GPa. The metallization of the CeCu2 structure is promoted by the intermolecular interactions among H2 molecules, but hindered by the modulation of Ar atoms. The competition between these two mechanisms implies that the pressure for metallization in Ar(H2)2 is higher than that suggested for pure hydrogen. This prediction is a result of an examination of a previous proposa...
Production of metallic hydrogen is one of the top three open quests of physics. Recent low temperatu...
Simple molecular compounds like nitrogen (N2) and hydrogen (H2) have fundamental significance, yet t...
Using optical spectroscopy, X-ray diffraction, and electrical transport measurements, we have studie...
The structural and electronic properties of the $\rm Ar(H_2)_2$ compound are studied as a function o...
A recent experimental study of the metallization of hydrogen tracked the direct band gap and vibron ...
Establishing metallic hydrogen is a goal of intensive theoretical and experimental work since 1935 w...
The metallization of high-pressure hydrogen, together with the associated molecular to atomic transi...
Production of metallic hydrogen is one of the top three open quests of physics[1]. Three different e...
The pressure-dependent structural and vibrational properties of barium hydride have been studied up ...
The mixed solid N2-Ar has been studied for x[N2]=0.75, 130<T<470 K, and 0<p=20 GPa. A transition, ve...
The structural, electronic, and dynamical properties of molecular hydrogen under pressure are invest...
The search for the means to convert molecular hydrogen to a metal under static conditions at high pr...
A new phase V of hydrogen was recently claimed in experiments above 325 GPa and 300 K. Due to the ex...
The structure of BaH2 at high pressure up to 58 GPa has been investigated with synchrotron powder x-...
International audienceDue to its potential applications as a high-energy density material, the high-...
Production of metallic hydrogen is one of the top three open quests of physics. Recent low temperatu...
Simple molecular compounds like nitrogen (N2) and hydrogen (H2) have fundamental significance, yet t...
Using optical spectroscopy, X-ray diffraction, and electrical transport measurements, we have studie...
The structural and electronic properties of the $\rm Ar(H_2)_2$ compound are studied as a function o...
A recent experimental study of the metallization of hydrogen tracked the direct band gap and vibron ...
Establishing metallic hydrogen is a goal of intensive theoretical and experimental work since 1935 w...
The metallization of high-pressure hydrogen, together with the associated molecular to atomic transi...
Production of metallic hydrogen is one of the top three open quests of physics[1]. Three different e...
The pressure-dependent structural and vibrational properties of barium hydride have been studied up ...
The mixed solid N2-Ar has been studied for x[N2]=0.75, 130<T<470 K, and 0<p=20 GPa. A transition, ve...
The structural, electronic, and dynamical properties of molecular hydrogen under pressure are invest...
The search for the means to convert molecular hydrogen to a metal under static conditions at high pr...
A new phase V of hydrogen was recently claimed in experiments above 325 GPa and 300 K. Due to the ex...
The structure of BaH2 at high pressure up to 58 GPa has been investigated with synchrotron powder x-...
International audienceDue to its potential applications as a high-energy density material, the high-...
Production of metallic hydrogen is one of the top three open quests of physics. Recent low temperatu...
Simple molecular compounds like nitrogen (N2) and hydrogen (H2) have fundamental significance, yet t...
Using optical spectroscopy, X-ray diffraction, and electrical transport measurements, we have studie...