International audienceThe metrology of laser-induced damage usually finds a single transition from 0% to 100% damage probability when progressively increasing the laser energy in experiments. We observe that picosecond pulses at 2-µm wavelength focused inside silicon provide a response that strongly deviates from this. Supported by nonlinear propagation simulations and energy flow analyses, we reveal an increased light delocalization for near critical power conditions. This leads to a nonmonotonic evolution of the peak delivered fluence as a function of the incoming pulse of the energy, a situation more complex than the clamping of the intensity until now observed in ultrafast regimes. Compared to femtosecond lasers, our measurements show t...
International audienceWe report on the refractive index engineering inside silicon bulk by picosecon...
We report herein the experimental investigation of the through-hole energy-density threshold of sili...
International audienceWe produce and characterize high-angle femtosecond Bessel beams at 1300-nm wav...
International audienceThe metrology of laser-induced damage usually finds a single transition from 0...
Three-dimensional laser writing inside silicon remains today inaccessible with the shortest infrared...
International audienceThree-dimensional laser writing inside silicon remains today inaccessible with...
International audienceBased on the development of a µJ-class Thulium-doped fiber laser operating in ...
International audienceRecent demonstrations of internal structuring of silicon have open new perspec...
International audienceThree-dimensional laser writing inside silicon remains today inaccessible with...
International audienceThe advent of ultrafast infrared lasers provides a unique opportunity for dire...
Spring Meeting of the European-Materials-Research-Society (E-MRS) / Symposium N / Symposium O / Symp...
International audienceAn important challenge in the field of three-dimensional ultrafast laser proce...
When quantifying laser damage in silicon, two key parameters are of importance, namely the depth of ...
International audienceWe generate and apply ultrafast trains of infrared pulses with durations rangi...
International audienceBy combining and synchronizing pulses of different durations from 170 fs to 5 ...
International audienceWe report on the refractive index engineering inside silicon bulk by picosecon...
We report herein the experimental investigation of the through-hole energy-density threshold of sili...
International audienceWe produce and characterize high-angle femtosecond Bessel beams at 1300-nm wav...
International audienceThe metrology of laser-induced damage usually finds a single transition from 0...
Three-dimensional laser writing inside silicon remains today inaccessible with the shortest infrared...
International audienceThree-dimensional laser writing inside silicon remains today inaccessible with...
International audienceBased on the development of a µJ-class Thulium-doped fiber laser operating in ...
International audienceRecent demonstrations of internal structuring of silicon have open new perspec...
International audienceThree-dimensional laser writing inside silicon remains today inaccessible with...
International audienceThe advent of ultrafast infrared lasers provides a unique opportunity for dire...
Spring Meeting of the European-Materials-Research-Society (E-MRS) / Symposium N / Symposium O / Symp...
International audienceAn important challenge in the field of three-dimensional ultrafast laser proce...
When quantifying laser damage in silicon, two key parameters are of importance, namely the depth of ...
International audienceWe generate and apply ultrafast trains of infrared pulses with durations rangi...
International audienceBy combining and synchronizing pulses of different durations from 170 fs to 5 ...
International audienceWe report on the refractive index engineering inside silicon bulk by picosecon...
We report herein the experimental investigation of the through-hole energy-density threshold of sili...
International audienceWe produce and characterize high-angle femtosecond Bessel beams at 1300-nm wav...