Selective optical excitation of a substrate lattice can drive phase changes across heterointerfaces. This phenomenon is a nonequilibrium analogue of static strain control in heterostructures and may lead to new applications in optically controlled phase change devices. Here, we make use of time-resolved nonresonant and resonant x-ray diffraction to clarify the underlying physics and to separate different microscopic degrees of freedom in space and time. We measure the dynamics of the lattice and that of the charge disproportionation in NdNiO3, when an insulator-metal transition is driven by coherent lattice distortions in the LaAlO3 substrate. We find that charge redistribution propagates at supersonic speeds from the interface into the NdN...
peer reviewedStrain engineering has been extended recently to the picosecond timescales, driving ult...
Ultrafast physics opens new avenues for directing materials to different functional macroscopic stat...
One of the main challenges in ultrafast material science is to trigger phase transitions with short ...
Selective optical excitation of a substrate lattice can drive phase changes across heterointerfaces....
Selective optical excitation of a substrate lattice can drive phase changes across heterointerfaces....
Static strain in complex oxide heterostructures has been extensively used to engineer electronic and...
We report on ultrafast optical experiments in which femtosecond midinfrared radiation is used to exc...
Imaging the atomic-scale dynamics of thin films is important to develop the next generation of compu...
We use femtosecond Resonant Soft X-ray Diffraction to observe heterogeneous melting of antiferromagn...
We investigate the nonequilibrium insulator-metal transition driven in a SmNiO3 thin film by coheren...
Strain engineering has been extended recently to the picosecond timescales, driving ultrafast metal–...
We review some recent advances in the use of optical fields at terahertz frequencies to drive the la...
We investigate the nonequilibrium insulator-metal transition driven in a SmNiO3 thin film by coheren...
maging the atomic-scale dynamics of thin films is important to develop the next generation of comput...
Driving phase changes by selective optical excitation of specific vibrational modes in molecular and...
peer reviewedStrain engineering has been extended recently to the picosecond timescales, driving ult...
Ultrafast physics opens new avenues for directing materials to different functional macroscopic stat...
One of the main challenges in ultrafast material science is to trigger phase transitions with short ...
Selective optical excitation of a substrate lattice can drive phase changes across heterointerfaces....
Selective optical excitation of a substrate lattice can drive phase changes across heterointerfaces....
Static strain in complex oxide heterostructures has been extensively used to engineer electronic and...
We report on ultrafast optical experiments in which femtosecond midinfrared radiation is used to exc...
Imaging the atomic-scale dynamics of thin films is important to develop the next generation of compu...
We use femtosecond Resonant Soft X-ray Diffraction to observe heterogeneous melting of antiferromagn...
We investigate the nonequilibrium insulator-metal transition driven in a SmNiO3 thin film by coheren...
Strain engineering has been extended recently to the picosecond timescales, driving ultrafast metal–...
We review some recent advances in the use of optical fields at terahertz frequencies to drive the la...
We investigate the nonequilibrium insulator-metal transition driven in a SmNiO3 thin film by coheren...
maging the atomic-scale dynamics of thin films is important to develop the next generation of comput...
Driving phase changes by selective optical excitation of specific vibrational modes in molecular and...
peer reviewedStrain engineering has been extended recently to the picosecond timescales, driving ult...
Ultrafast physics opens new avenues for directing materials to different functional macroscopic stat...
One of the main challenges in ultrafast material science is to trigger phase transitions with short ...