International audienceCrystal plasticity involves the motion of dislocations under stress. So far, atomistic simulations of this process have predicted Peierls stresses(1), the stress needed to overcome the crystal resistance in the absence of thermal fluctuations, of more than twice the experimental values, a discrepancy best-known in body-centred cubic crystals(2-4). Here we show that a large contribution arises from the crystal zero-point vibrations, which ease dislocation motion below typically half the Debye temperature. Using Wigner's quantum transition state theory(5,6) in atomistic models of crystals, we found a large decrease of the kink-pair formation enthalpy due to the quantization of the crystal vibrational modes. Consequently,...
We study the structural and mobility properties of edge dislocations in rare-gas crystals with the h...
We study the structural and mobility properties of edge dislocations in rare-gas crystals with the h...
We discuss elastic instabilities of the atomic crystal lattice at zero temperature. Because of long-...
International audienceCrystal plasticity involves the motion of dislocations under stress. So far, a...
International audienceCrystal plasticity involves the motion of dislocations under stress. So far, a...
International audienceCrystal plasticity involves the motion of dislocations under stress. So far, a...
We address generic behavior of quantum dislocations in almost ideal crystals. It is proven that the ...
International audienceModeling the dislocations glide through atomic scale simulations in Al, Cu and...
International audience: It was recently shown (Proville et al 2012 Nature Mater. 11 845) that to pre...
International audience: It was recently shown (Proville et al 2012 Nature Mater. 11 845) that to pre...
International audience: It was recently shown (Proville et al 2012 Nature Mater. 11 845) that to pre...
International audience: It was recently shown (Proville et al 2012 Nature Mater. 11 845) that to pre...
We study the structural and mobility properties of edge dislocations in rare-gas crystals with the h...
We study the structural and mobility properties of edge dislocations in rare-gas crystals with the h...
Crystal dislocations govern the plastic mechanical properties of materials but also affect the elect...
We study the structural and mobility properties of edge dislocations in rare-gas crystals with the h...
We study the structural and mobility properties of edge dislocations in rare-gas crystals with the h...
We discuss elastic instabilities of the atomic crystal lattice at zero temperature. Because of long-...
International audienceCrystal plasticity involves the motion of dislocations under stress. So far, a...
International audienceCrystal plasticity involves the motion of dislocations under stress. So far, a...
International audienceCrystal plasticity involves the motion of dislocations under stress. So far, a...
We address generic behavior of quantum dislocations in almost ideal crystals. It is proven that the ...
International audienceModeling the dislocations glide through atomic scale simulations in Al, Cu and...
International audience: It was recently shown (Proville et al 2012 Nature Mater. 11 845) that to pre...
International audience: It was recently shown (Proville et al 2012 Nature Mater. 11 845) that to pre...
International audience: It was recently shown (Proville et al 2012 Nature Mater. 11 845) that to pre...
International audience: It was recently shown (Proville et al 2012 Nature Mater. 11 845) that to pre...
We study the structural and mobility properties of edge dislocations in rare-gas crystals with the h...
We study the structural and mobility properties of edge dislocations in rare-gas crystals with the h...
Crystal dislocations govern the plastic mechanical properties of materials but also affect the elect...
We study the structural and mobility properties of edge dislocations in rare-gas crystals with the h...
We study the structural and mobility properties of edge dislocations in rare-gas crystals with the h...
We discuss elastic instabilities of the atomic crystal lattice at zero temperature. Because of long-...