International audienceAbstract Ultrafast light-matter interactions present a promising route to control ferroelectric polarization at room temperature, which is an exciting idea for designing novel ferroelectric-based devices. One emergent light-induced technique for controlling polarization consists in anharmonically driving a high-frequency phonon mode through its coupling to the polarization. A step towards such control has been recently accomplished, but the polarization has been reported to be only partially reversed and for a short lapse of time. Such transient partial reversal is not currently understood, and it is presently unclear if full control of polarization, by, e.g., fully reversing it or even making it adopt different direct...
Coherent radiation with frequencies ranging from 0.3 to 30 THz has recently become accessible using ...
Ultrafast modulation of polarization amplitude by terahertz fields in electronic-type organic ferroe...
We show that properly shaped terahertz (THz) fields can be used to move ions in ferroelectric crysta...
International audienceAbstract Ultrafast light-matter interactions present a promising route to cont...
I propose a method for ultrafast switching of ferroelectric polarization using midinfrared pulses. T...
The ability to manipulate ferroelectrics at ultrafast speeds has long been an elusive target for mat...
Ultrafast optical control of ferroelectricity using intense terahertz fields has attracted significa...
Optical control of material properties is usually limited to the region that absorbs the light. Coup...
The paper presents the results of an investigation of the ultrafast nonlinear-optical response of a ...
A theory describing how ferroic properties can emerge transiently in the ultra-fast regime by breaki...
The response of a soft-phonon ferroelectric material subjected to a high-intensity optical pulse of ...
The optical control of polarization switching is attracting tremendous interest because photoirradia...
Relaxor ferroelectrics have been intensely studied for decades based on their unique electromechanic...
Strong coupling between light and matter occurs when the two interact such that new hybrid modes, th...
We present a microscopic theory for ultrafast control of solids with high-intensity terahertz freque...
Coherent radiation with frequencies ranging from 0.3 to 30 THz has recently become accessible using ...
Ultrafast modulation of polarization amplitude by terahertz fields in electronic-type organic ferroe...
We show that properly shaped terahertz (THz) fields can be used to move ions in ferroelectric crysta...
International audienceAbstract Ultrafast light-matter interactions present a promising route to cont...
I propose a method for ultrafast switching of ferroelectric polarization using midinfrared pulses. T...
The ability to manipulate ferroelectrics at ultrafast speeds has long been an elusive target for mat...
Ultrafast optical control of ferroelectricity using intense terahertz fields has attracted significa...
Optical control of material properties is usually limited to the region that absorbs the light. Coup...
The paper presents the results of an investigation of the ultrafast nonlinear-optical response of a ...
A theory describing how ferroic properties can emerge transiently in the ultra-fast regime by breaki...
The response of a soft-phonon ferroelectric material subjected to a high-intensity optical pulse of ...
The optical control of polarization switching is attracting tremendous interest because photoirradia...
Relaxor ferroelectrics have been intensely studied for decades based on their unique electromechanic...
Strong coupling between light and matter occurs when the two interact such that new hybrid modes, th...
We present a microscopic theory for ultrafast control of solids with high-intensity terahertz freque...
Coherent radiation with frequencies ranging from 0.3 to 30 THz has recently become accessible using ...
Ultrafast modulation of polarization amplitude by terahertz fields in electronic-type organic ferroe...
We show that properly shaped terahertz (THz) fields can be used to move ions in ferroelectric crysta...