International audienceThe propagation of dislocations in random crystals is evidenced to be governed by atomic-scale avalanches whose the extension in space and the time intermittency characterizingly diverge at the critical threshold. Our work is the very first atomic-scale evidence that the paradigm of second order phase transitions applies to the depinning of elastic interfaces in random media
Although scaling phenomena have long been documented in crystalline plasticity, the universality cla...
Crystalline materials deform in an intermittent way with slip-avalanches that are power-law distribu...
International audienceAcoustic emission experiments on creeping ice as well as numerical simulations...
International audienceThe propagation of dislocations in random crystals is evidenced to be governed...
International audienceThe propagation of dislocations in random crystals is evidenced to be governed...
International audienceThe propagation of dislocations in random crystals is evidenced to be governed...
International audienceThe propagation of dislocations in random crystals is evidenced to be governed...
Several experiments show that crystalline solids deform in a bursty and intermittent fashion. Power-...
Several experiments show that crystalline solids deform in a bursty and intermittent fashion. Power-...
Plastic deformation in crystalline materials consists of an ensemble of collective dislocation glide...
International audienceBased on atomic scale simulation techniques, we study the dislocation pinning ...
International audienceBased on atomic scale simulation techniques, we study the dislocation pinning ...
International audienceWe report our atomic-scale computations for the static depinning threshold of ...
International audienceWe report our atomic-scale computations for the static depinning threshold of ...
Self-organized criticality (SOC) is widely observed in systems ranging from creep deformation of sin...
Although scaling phenomena have long been documented in crystalline plasticity, the universality cla...
Crystalline materials deform in an intermittent way with slip-avalanches that are power-law distribu...
International audienceAcoustic emission experiments on creeping ice as well as numerical simulations...
International audienceThe propagation of dislocations in random crystals is evidenced to be governed...
International audienceThe propagation of dislocations in random crystals is evidenced to be governed...
International audienceThe propagation of dislocations in random crystals is evidenced to be governed...
International audienceThe propagation of dislocations in random crystals is evidenced to be governed...
Several experiments show that crystalline solids deform in a bursty and intermittent fashion. Power-...
Several experiments show that crystalline solids deform in a bursty and intermittent fashion. Power-...
Plastic deformation in crystalline materials consists of an ensemble of collective dislocation glide...
International audienceBased on atomic scale simulation techniques, we study the dislocation pinning ...
International audienceBased on atomic scale simulation techniques, we study the dislocation pinning ...
International audienceWe report our atomic-scale computations for the static depinning threshold of ...
International audienceWe report our atomic-scale computations for the static depinning threshold of ...
Self-organized criticality (SOC) is widely observed in systems ranging from creep deformation of sin...
Although scaling phenomena have long been documented in crystalline plasticity, the universality cla...
Crystalline materials deform in an intermittent way with slip-avalanches that are power-law distribu...
International audienceAcoustic emission experiments on creeping ice as well as numerical simulations...