Cerium (Ce) undergoes a significant (∼16%) volume collapse associated with an isomorphic fcc-fcc phase transformation when subject to compressive loading. We present here a new Embedded Atom Method (EAM) potential for Cerium that models two minima for the two fcc phases. We show results from its use in Molecular Dynamics (MD) simulations of Ce samples subjected to shocks with pressures ranging from 0.5 to 25 GPa. A split wave structure is observed, with an elastic precursor followed by a plastic wave. The plastic wave causes the expected fcc-fcc phase transformation. Comparisons to experiments and MD simulations on Cesium (Cs) indicate that three waves could be observed. The construction of the EAM potential may be the source of the differe...
Most metals and alloys undergo plastic deformation at shear stresses and/or pressures in the Kbars r...
International audienceThe spherical-to-deformed phase transition in cerium isotopes recently suggest...
SIGLEAvailable from British Library Document Supply Centre-DSC:DXN026290 / BLDSC - British Library D...
There has been much interest in the past in understanding the dynamic properties of phase changing m...
Abstract.: Z-cut quartz flyer was accelerated by a power gun to impact on cerium sample to study the...
International audienceWe report here highly accurate ultrasonic measurements on ultrapure polycrysta...
The behavior of the f-electrons in the lanthanides and actinides governs important macroscopic prope...
There has been much interest in the past in understanding the dynamic properties of phase changing m...
International audienceNumerous investigations have been performed on Ce metal since the discovery of...
Cerium has a complex phase diagram that is explained by the presence of structure phase transitions....
International audienceThe cerium α-γ phase transition is characterized by means of a many-body Jastr...
The structural and elastic properties of cerium chalcogenides (CeZ, Z = S, Se, Te) under high pressu...
Both cerium (Ce) and praseodymium (Pr) undergo a volume collapse transition under compression that o...
The volume compression of cerium was remeasured up to 4 GPa.The bulk modulus and its pressure deriva...
Most metals and alloys undergo plastic deformation at shear stresses and/or pressures in the Kbars r...
Most metals and alloys undergo plastic deformation at shear stresses and/or pressures in the Kbars r...
International audienceThe spherical-to-deformed phase transition in cerium isotopes recently suggest...
SIGLEAvailable from British Library Document Supply Centre-DSC:DXN026290 / BLDSC - British Library D...
There has been much interest in the past in understanding the dynamic properties of phase changing m...
Abstract.: Z-cut quartz flyer was accelerated by a power gun to impact on cerium sample to study the...
International audienceWe report here highly accurate ultrasonic measurements on ultrapure polycrysta...
The behavior of the f-electrons in the lanthanides and actinides governs important macroscopic prope...
There has been much interest in the past in understanding the dynamic properties of phase changing m...
International audienceNumerous investigations have been performed on Ce metal since the discovery of...
Cerium has a complex phase diagram that is explained by the presence of structure phase transitions....
International audienceThe cerium α-γ phase transition is characterized by means of a many-body Jastr...
The structural and elastic properties of cerium chalcogenides (CeZ, Z = S, Se, Te) under high pressu...
Both cerium (Ce) and praseodymium (Pr) undergo a volume collapse transition under compression that o...
The volume compression of cerium was remeasured up to 4 GPa.The bulk modulus and its pressure deriva...
Most metals and alloys undergo plastic deformation at shear stresses and/or pressures in the Kbars r...
Most metals and alloys undergo plastic deformation at shear stresses and/or pressures in the Kbars r...
International audienceThe spherical-to-deformed phase transition in cerium isotopes recently suggest...
SIGLEAvailable from British Library Document Supply Centre-DSC:DXN026290 / BLDSC - British Library D...