Ultrafast terahertz field control of electronic and structural interactions in vanadium dioxide
Description
The dynamical processes associated with electric field manipulation of the polarization in a ferroelectric remain largely unknown but fundamentally determine the speed and functionality of ferroelectric materials and devices. Here in this paper we apply subpicosecond duration, single-cycle terahertz pulses as an ultrafast electric field bias to prototypical BaTiO 3 ferroelectric thin films with the atomic-scale response probed by femtosecond x-ray-scattering techniques. We show that electric fields applied perpendicular to the ferroelectric polarization drive large-amplitude displacements of the titanium atoms along the ferroelectric polarization axis, comparable to that of the built-in displacements associated with the intrinsic polarization and incoherent acrossmore » unit cells. This effect is associated with a dynamic rotation of the ferroelectric polarization switching on and then off on picosecond time scales. These transient polarization modulations are followed by long-lived vibrational heating effects driven by resonant excitation of the ferroelectric soft mode, as reflected in changes in the c-axis tetragonality. The ultrafast structural characterization described here enables a direct comparison with first-principles-based molecular-dynamics simulations, with good agreement obtained.
Availability note (English)
Available from https://www.osti.gov/servlets/purl/1461889; https://www.osti.gov/biblio/1461889; DOE Accepted Manuscript full text, or the publishers Best Available Version will be available free of charge after the embargo periodAdditional details
Identifiers
Publishing Information
- Journal Title
- Physical Review B
- Journal Volume
- 98
- Journal Issue
- 4
- Journal Page Range
- vp.
- ISSN
- 2469-9950
INIS
- Country of Publication
- United States
- Country of Input or Organization
- United States
- INIS RN
- 51031600
- Subject category
- S75: CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY;
- Descriptors DEI
- BARIUM COMPOUNDS; ELECTRIC FIELDS; FERROELECTRIC MATERIALS; MOLECULAR DYNAMICS METHOD; POLARIZATION; THIN FILMS; TITANATES; VANADIUM OXIDES; X-RAY DIFFRACTION
- Descriptors DEC
- ALKALINE EARTH METAL COMPOUNDS; CALCULATION METHODS; CHALCOGENIDES; COHERENT SCATTERING; DIELECTRIC MATERIALS; DIFFRACTION; FILMS; MATERIALS; OXIDES; OXYGEN COMPOUNDS; SCATTERING; TITANIUM COMPOUNDS; TRANSITION ELEMENT COMPOUNDS; VANADIUM COMPOUNDS
Optional Information
- Contract/Grant/Project number
- AC02-06CH11357; FG02-09ER46643; SFB762; CHE-1111557; AC02-76SF00515; N00014-13-1-0509; SFRH/ BD/ 47847/ 2008; 2015-SLAC-100238-Funding
- Funding organization
- USDOE Office of Science - SC, Basic Energy Sciences (BES) (SC-22). Materials Sciences & Engineering Division (United States); US Department of the Navy, Office of Naval Research (ONR) (United States); National Science Foundation (NSF) (United States); Foundation for Science and Technology (FCT) (Portugal); German Research Foundation (DFG) (Germany); Knut and Alice Wallenberg Foundation (Sweden)
- Secondary number(s)
- OSTIID--1461820