Terahertz pulses are applied as an all-optical bias to ferroelectric thin-film BiFeO3 while monitoring the time-dependent ferroelectric polarization through its nonlinear optical response. Modulations in the intensity of the second harmonic light generated by the film correspond to on-off ratios of 220× gateable on femtosecond timescales. Polarization modulations comparable to the built-in static polarization are observed
Using piezoresponse force microscopy in an ultrahigh vacuum, polarization switching has been detecte...
Abstract We optically study the as-yet little explored multiferroic material, BaTiO3-...
A new terahertz (THz) modulator based on bias-driven carrier conductivity change in a heterojunction...
Terahertz pulses are applied as an all-optical bias to ferroelectric thin-film $BiFeO_{3}$ while mon...
The paper presents the results of an investigation of the ultrafast nonlinear-optical response of a ...
The dynamical processes associated with electric field manipulation of the polarization in a ferroel...
Ultrafast polarization switching is being considered for the next generation of ferroelectric-based ...
International audienceAbstract Ultrafast light-matter interactions present a promising route to cont...
We optically study the as-yet little explored multiferroic material, BaTiO3-BiFeO3 (BTO-BFO), that h...
The functionalities of ferroelectric materials are closely related to the switchable spontaneous pol...
Both the linear and nonlinear optical properties of Bi3.15Nd0.85Ti3O12 (BNT0.85) ferroelectric thin ...
Contains fulltext : 201417.pdf (Publisher’s version ) (Open Access
The ability to manipulate ferroelectrics at ultrafast speeds has long been an elusive target for mat...
The success of oxide electronics depends on the ability to design functional properties such as ferr...
“This document is the Accepted Manuscript version of a Published Work that appeared in final form in...
Using piezoresponse force microscopy in an ultrahigh vacuum, polarization switching has been detecte...
Abstract We optically study the as-yet little explored multiferroic material, BaTiO3-...
A new terahertz (THz) modulator based on bias-driven carrier conductivity change in a heterojunction...
Terahertz pulses are applied as an all-optical bias to ferroelectric thin-film $BiFeO_{3}$ while mon...
The paper presents the results of an investigation of the ultrafast nonlinear-optical response of a ...
The dynamical processes associated with electric field manipulation of the polarization in a ferroel...
Ultrafast polarization switching is being considered for the next generation of ferroelectric-based ...
International audienceAbstract Ultrafast light-matter interactions present a promising route to cont...
We optically study the as-yet little explored multiferroic material, BaTiO3-BiFeO3 (BTO-BFO), that h...
The functionalities of ferroelectric materials are closely related to the switchable spontaneous pol...
Both the linear and nonlinear optical properties of Bi3.15Nd0.85Ti3O12 (BNT0.85) ferroelectric thin ...
Contains fulltext : 201417.pdf (Publisher’s version ) (Open Access
The ability to manipulate ferroelectrics at ultrafast speeds has long been an elusive target for mat...
The success of oxide electronics depends on the ability to design functional properties such as ferr...
“This document is the Accepted Manuscript version of a Published Work that appeared in final form in...
Using piezoresponse force microscopy in an ultrahigh vacuum, polarization switching has been detecte...
Abstract We optically study the as-yet little explored multiferroic material, BaTiO3-...
A new terahertz (THz) modulator based on bias-driven carrier conductivity change in a heterojunction...