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Title: New modalities of strain-control of ferroelectric thin films

Abstract

Ferroelectrics, with their spontaneous switchable electric polarization and strong coupling between their electrical, mechanical, thermal, and optical responses, provide functionalities crucial for a diverse range of applications. Over the past decade, there has been significant progress in epitaxial strain engineering of oxide ferroelectric thin films to control and enhance the nature of ferroelectric order, alter ferroelectric susceptibilities, and to create new modes of response which can be harnessed for various applications. This review aims to cover some of the most important discoveries in strain engineering over the past decade and highlight some of the new and emerging approaches for strain control of ferroelectrics. We discuss how these new approaches to strain engineering provide promising routes to control and decouple ferroelectric susceptibilities and create new modes of response not possible in the confines of conventional strain engineering. To conclude, we will provide an overview and prospectus of these new and interesting modalities of strain engineering helping to accelerate their widespread development and implementation in future functional devices.

Authors:
 [1];  [1];  [1];  [2];  [1];  [1];  [1];  [1];  [2]
  1. Univ. of California, Berkeley, CA (United States)
  2. Univ. of California, Berkeley, CA (United States); Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)
Publication Date:
Research Org.:
Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States)
Sponsoring Org.:
USDOE Office of Science (SC), Basic Energy Sciences (BES)
OSTI Identifier:
1530240
Alternate Identifier(s):
OSTI ID: 1253390
Grant/Contract Number:  
AC02-05CH11231; SC0012375
Resource Type:
Accepted Manuscript
Journal Name:
Journal of Physics. Condensed Matter
Additional Journal Information:
Journal Volume: 28; Journal Issue: 26; Journal ID: ISSN 0953-8984
Publisher:
IOP Publishing
Country of Publication:
United States
Language:
English
Subject:
75 CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY

Citation Formats

Damodaran, Anoop R., Agar, Joshua C., Pandya, Shishir, Chen, Zuhuang, Dedon, Liv, Xu, Ruijuan, Apgar, Brent, Saremi, Sahar, and Martin, Lane W. New modalities of strain-control of ferroelectric thin films. United States: N. p., 2016. Web. doi:10.1088/0953-8984/28/26/263001.
Damodaran, Anoop R., Agar, Joshua C., Pandya, Shishir, Chen, Zuhuang, Dedon, Liv, Xu, Ruijuan, Apgar, Brent, Saremi, Sahar, & Martin, Lane W. New modalities of strain-control of ferroelectric thin films. United States. https://doi.org/10.1088/0953-8984/28/26/263001
Damodaran, Anoop R., Agar, Joshua C., Pandya, Shishir, Chen, Zuhuang, Dedon, Liv, Xu, Ruijuan, Apgar, Brent, Saremi, Sahar, and Martin, Lane W. Tue . "New modalities of strain-control of ferroelectric thin films". United States. https://doi.org/10.1088/0953-8984/28/26/263001. https://www.osti.gov/servlets/purl/1530240.
@article{osti_1530240,
title = {New modalities of strain-control of ferroelectric thin films},
author = {Damodaran, Anoop R. and Agar, Joshua C. and Pandya, Shishir and Chen, Zuhuang and Dedon, Liv and Xu, Ruijuan and Apgar, Brent and Saremi, Sahar and Martin, Lane W.},
abstractNote = {Ferroelectrics, with their spontaneous switchable electric polarization and strong coupling between their electrical, mechanical, thermal, and optical responses, provide functionalities crucial for a diverse range of applications. Over the past decade, there has been significant progress in epitaxial strain engineering of oxide ferroelectric thin films to control and enhance the nature of ferroelectric order, alter ferroelectric susceptibilities, and to create new modes of response which can be harnessed for various applications. This review aims to cover some of the most important discoveries in strain engineering over the past decade and highlight some of the new and emerging approaches for strain control of ferroelectrics. We discuss how these new approaches to strain engineering provide promising routes to control and decouple ferroelectric susceptibilities and create new modes of response not possible in the confines of conventional strain engineering. To conclude, we will provide an overview and prospectus of these new and interesting modalities of strain engineering helping to accelerate their widespread development and implementation in future functional devices.},
doi = {10.1088/0953-8984/28/26/263001},
journal = {Journal of Physics. Condensed Matter},
number = 26,
volume = 28,
place = {United States},
year = {Tue May 17 00:00:00 EDT 2016},
month = {Tue May 17 00:00:00 EDT 2016}
}

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