peer reviewedStrain engineering has been extended recently to the picosecond timescales, driving ultrafast metal–insulator phase transitions and the propagation of ultrasonic demagnetization fronts. However, the nonlinear lattice dynamics underpinning interfacial optoelectronic phase switching have not yet been addressed. Here we perform time-resolved all-optical pump-probe experiments to study ultrafast lattice dynamics initiated by impulsive light excitation tuned in resonance with a polar lattice vibration in LaAlO3 single crystals, one of the most widely utilized substrates for oxide electronics. We show that ionic Raman scattering drives coherent rotations of the oxygen octahedra around a high-symmetry crystal axis. By means of DFT cal...
In this thesis, we have used ultrafast spectroscopy to study the optical properties of two semicondu...
Coherent lattice vibrations are excited and probed with pulses of 10 fs duration in LaMnO3. The meas...
Femtosecond laser pulses can be used to create and detect temporally coherent phonon fields in solid...
peer reviewedStrain engineering has been extended recently to the picosecond timescales, driving ult...
Strain engineering has been extended recently to the picosecond timescales, driving ultrafast metal–...
Excitation of optical transitions in solids using ultrashort pulses of light allows to selectively p...
In ionic Raman scattering, infrared-active phonons mediate a scattering process that results in the ...
Two types of coupling between electromagnetic radiation and a crystal lattice have so far been ident...
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...
The crystal structure of a solid largely dictates its electronic, optical and mechanical properties....
We report on ultrafast optical experiments in which femtosecond midinfrared radiation is used to exc...
Pump-probe measurements of coherent-phonon-induced changes of refractive index in LaAlO3 are dominat...
Selective optical excitation of a substrate lattice can drive phase changes across heterointerfaces....
Ultrafast optical pump-probe technique, by exploiting ultrashort laser pulses (femtosecond), allows ...
In this thesis, we have used ultrafast spectroscopy to study the optical properties of two semicondu...
Coherent lattice vibrations are excited and probed with pulses of 10 fs duration in LaMnO3. The meas...
Femtosecond laser pulses can be used to create and detect temporally coherent phonon fields in solid...
peer reviewedStrain engineering has been extended recently to the picosecond timescales, driving ult...
Strain engineering has been extended recently to the picosecond timescales, driving ultrafast metal–...
Excitation of optical transitions in solids using ultrashort pulses of light allows to selectively p...
In ionic Raman scattering, infrared-active phonons mediate a scattering process that results in the ...
Two types of coupling between electromagnetic radiation and a crystal lattice have so far been ident...
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...
The crystal structure of a solid largely dictates its electronic, optical and mechanical properties....
We report on ultrafast optical experiments in which femtosecond midinfrared radiation is used to exc...
Pump-probe measurements of coherent-phonon-induced changes of refractive index in LaAlO3 are dominat...
Selective optical excitation of a substrate lattice can drive phase changes across heterointerfaces....
Ultrafast optical pump-probe technique, by exploiting ultrashort laser pulses (femtosecond), allows ...
In this thesis, we have used ultrafast spectroscopy to study the optical properties of two semicondu...
Coherent lattice vibrations are excited and probed with pulses of 10 fs duration in LaMnO3. The meas...
Femtosecond laser pulses can be used to create and detect temporally coherent phonon fields in solid...