We show that properly shaped terahertz (THz) fields can be used to move ions in ferroelectric crystals from their positions in an initial domain orientation along well-defined collective microscopic paths into the positions they occupy in a new domain orientation. Collective coherent control will enable direct observation of fast highly nonlinear material responses and far-from-equilibrium structures that can be harnessed in electro-optic devices and nonvolatile computer memory.open1154Nsciescopu
Lead zirconate titanate is a ferroelectric material of considerable interest with a wide range of te...
Analysis of polarization switching dynamics by means of the inhomogeneous field mechanism model allo...
Future information technology demands ultimately fast, low-loss quantum control. Intense light field...
International audienceAbstract Ultrafast light-matter interactions present a promising route to cont...
The dynamical processes associated with electric field manipulation of the polarization in a ferroel...
“This document is the Accepted Manuscript version of a Published Work that appeared in final form in...
Future information technology demands ever-faster, low-loss quantum control. Intense light fields ha...
"Hidden phases” are metastable collective states of matter that are typically not accessible on equi...
The emergence of collective order in matter is among the most fundamental and intriguing phenomena i...
Ferroelectric materials find application in numerous electronic devices and are continuously enablin...
Ultrafast modulation of polarization amplitude by terahertz fields in electronic-type organic ferroe...
The ferroelectric polarization switching along an external electric field is most important for the ...
Future information technology demands ever-faster, low-loss quantum control. Intense light fields ha...
Electric-field-induced phase transitions in Bi0.5Na0.5TiO3 (BNT)-based relaxor ferroelectrics are es...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from P...
Lead zirconate titanate is a ferroelectric material of considerable interest with a wide range of te...
Analysis of polarization switching dynamics by means of the inhomogeneous field mechanism model allo...
Future information technology demands ultimately fast, low-loss quantum control. Intense light field...
International audienceAbstract Ultrafast light-matter interactions present a promising route to cont...
The dynamical processes associated with electric field manipulation of the polarization in a ferroel...
“This document is the Accepted Manuscript version of a Published Work that appeared in final form in...
Future information technology demands ever-faster, low-loss quantum control. Intense light fields ha...
"Hidden phases” are metastable collective states of matter that are typically not accessible on equi...
The emergence of collective order in matter is among the most fundamental and intriguing phenomena i...
Ferroelectric materials find application in numerous electronic devices and are continuously enablin...
Ultrafast modulation of polarization amplitude by terahertz fields in electronic-type organic ferroe...
The ferroelectric polarization switching along an external electric field is most important for the ...
Future information technology demands ever-faster, low-loss quantum control. Intense light fields ha...
Electric-field-induced phase transitions in Bi0.5Na0.5TiO3 (BNT)-based relaxor ferroelectrics are es...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from P...
Lead zirconate titanate is a ferroelectric material of considerable interest with a wide range of te...
Analysis of polarization switching dynamics by means of the inhomogeneous field mechanism model allo...
Future information technology demands ultimately fast, low-loss quantum control. Intense light field...