Charles Paillard
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Associate Professor
Also affiliated: Supélec (2021–2024); Centre National de la Recherche Scientifique (2015–2026); Université Toulouse III - Paul Sabatier (2021); Université Paris-Saclay (2015–2026); Christian-Albrechts-Universität zu Kiel (2014); Laboratoire de Mécanique des Sols, Structures et Matériaux (2022); CentraleSupélec (2015–2026); Centre d’Élaboration de Matériaux et d’Études Structurales (2021); Laboratoire Structures, Propriétés et Modélisation des Solides (2015–2026); Université de Toulouse (2021)
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
Charles Paillard's research centers on materials science, with a focus on ferroelectric and multiferroic materials, as well as oxide electronics. His work investigates the fundamental properties and potential applications of these materials, exploring areas such as magnetic skyrmions in ultra-thin transition metal films and the strain and magnetic field effects on spin-structure transitions in multiferroic BiFeO3. Paillard has also explored novel approaches for material design, including postsynthetic methods for chiral ferroelectric metal–organic frameworks and the photostrictive properties of two-dimensional materials.
His research has led to publications addressing the status and future of photovoltaics incorporating ferroelectrics and the broader roadmap for oxide electronics. Paillard's scholarly contributions are reflected in his h-index of 23 and over 2,500 citations across 145 publications. He maintains active collaborations with researchers at the University of Arkansas at Fayetteville, including Laurent Bellaiche, S. A. Prosandeev, and Carmel Dansou, with whom he has co-authored multiple publications.
Metrics
- h-index: 24
- Publications: 133
- Citations: 2,562
Positions
-
Associate Professor 2026–presentUniversity of Arkansas at Fayetteville Physics ORCID
-
Research Professor 2023–2026University of Arkansas at Fayetteville Physics ORCID
-
Associate Professor 2018–2023CentraleSupélec Laboratoire Structures, Propriétés et Modélisation des Solides ORCID
-
Post-doctoral Associate Researcher 2016–2019University of Arkansas Fayetteville Physics ORCID
Selected Publications
-
Novel static and dynamical properties of electric topological defects (2026)
-
Correlation of synthesis route, structure and multifunctional properties in BaTiO3 nanoparticles (2026)
-
Deformation-Potential-Driven Photostriction in Layered Ferroelectrics (2026)
-
Interface-Driven Growth Mode Control of 2D GaSe on 3D GaAs Substrates with Distinct Crystallographic Orientations (2026)
-
Interaction between point defects and vertical inversion domain walls in wurtzite AlN (2026)arXiv (Cornell University) OpenAlex
-
Light-Driven Ferroic Switching Enables Reversible Control of Hydrogen Adsorption Thermodynamics (2026)
-
Systematic comparison of approximations and functionals in first-principle calculations of aluminum-based III-V ferroelectric nitrides (2026)arXiv (Cornell University) OpenAlex
-
Uncovering Antipolar Ordering and Pressure-Tunable Phases in Hexagonal LaN (2026)arXiv (Cornell University) OpenAlex
-
Strain-induced magnetic response in Ce2Fe17 under biaxial (ab) deformation (2026)
-
Simulations of light-matter interaction in ferroelectrics and related materials (2026)
-
Domain-Wall-Mediated Polarization Switching in Ferroelectric AlScN: Strain Relief and Field-Dependent Dynamics (2026)
-
Critical thickness for antiferroelectric-like phase transition in BiFeO 3 / SrRuO 3 superlattices (2026)
-
On the importance of the optical anisotropy in the detection of coherent acoustic phonons in a time-domain Brillouin scattering experiment (2026)
-
Thickness-modulated crystal structure and band gap of 2D SnSe deposited by molecular beam epitaxy (2026)
-
Magnetoelectric properties at the Co/AlN(0001) interface (2026)
Collaboration Network
Top Collaborators
- Photostrictive Two-Dimensional Materials in the Monochalcogenide Family
- Photostriction in Ferroelectrics from Density Functional Theory
- Purely Cubic Spin Splittings with Persistent Spin Textures
- Pinched hysteresis loop in defect-free ferroelectric materials
- Epitaxial ferroelectric oxide thin films for optical applications
Showing 5 of 37 shared publications
- Towards Oxide Electronics: a Roadmap
- Polarons, vacancies, vacancy associations, and defect states in multiferroic BiFeO 3
- Photostriction in Ferroelectrics from Density Functional Theory
- Pinched hysteresis loop in defect-free ferroelectric materials
- Epitaxial ferroelectric oxide thin films for optical applications
Showing 5 of 21 shared publications
- Novel Dynamical Magnetoelectric Effects in Multiferroic BiFeO3
- Strain control of layer-resolved negative capacitance in superlattices
- Understanding and controlling dipolar Moiré pattern in ferroelectric perovskite oxide nanolayers
- Universality and origin of ultrashort intrinsic negative dielectric permittivity
- Enhanced transient negative capacitance during inhomogeneous ferroelectric switching
Showing 5 of 9 shared publications
- Photostrictive Two-Dimensional Materials in the Monochalcogenide Family
- Photostriction in Ferroelectrics from Density Functional Theory
- Pinched hysteresis loop in defect-free ferroelectric materials
- Novel Dynamical Magnetoelectric Effects in Multiferroic BiFeO3
- Photostriction and elasto-optic response in multiferroics and ferroelectrics from first principles
Showing 5 of 8 shared publications
- Designing Multifunctionality via Assembling Dissimilar Materials: Epitaxial AlN/ScN Superlattices
- Linear Versus Nonlinear Electro-Optic Effects in Materials
- Giant electro-optic and elasto-optic effects in ferroelectric NbOI 2
- Large linear and nonlinear electro-optic coefficients in two-dimensional ferroelectrics
- Electro-optic properties from ab initio calculations in two-dimensional materials
Showing 5 of 8 shared publications
- Purely Cubic Spin Splittings with Persistent Spin Textures
- Epitaxial ferroelectric oxide thin films for optical applications
- Rashba-like spin-orbit and strain effects in tetragonal PbTiO3
- Tailoring properties of hybrid perovskites by domain-width engineering with charged walls
- Displacement Current in Domain Walls of Bismuth Ferrite
Showing 5 of 6 shared publications
- Designing Multifunctionality via Assembling Dissimilar Materials: Epitaxial AlN/ScN Superlattices
- Linear Versus Nonlinear Electro-Optic Effects in Materials
- Large linear and nonlinear electro-optic coefficients in two-dimensional ferroelectrics
- Electro-optic properties from ab initio calculations in two-dimensional materials
- Large photostriction near the phase boundary in BiFe O 3 under varying epitaxial strain
Showing 5 of 6 shared publications
- Photoluminescence and structural phase transition relationship in Er-doped BaTiO 3 model ferroelectric system
- Submillisecond Electric Field Sensing with an Individual Rare-Earth Doped Ferroelectric Nanocrystal
- Sub-millisecond electric field sensing with an individual rare-earth doped ferroelectric nanocrystal
- Polarization texture and sensing application of ferroelectric nanocrystals
- Correlation of synthesis route, structure and multifunctional properties in BaTiO3 nanoparticles
- Ferroelectric Texture of Individual Barium Titanate Nanocrystals
- Submillisecond Electric Field Sensing with an Individual Rare-Earth Doped Ferroelectric Nanocrystal
- Sub-millisecond electric field sensing with an individual rare-earth doped ferroelectric nanocrystal
- Polarization texture and sensing application of ferroelectric nanocrystals
- Correlation of synthesis route, structure and multifunctional properties in BaTiO3 nanoparticles
- Polarons, vacancies, vacancy associations, and defect states in multiferroic BiFeO 3
- Photostriction in Ferroelectrics from Density Functional Theory
- Vacancies and holes in bulk and at 180° domain walls in lead titanate
- Photovoltaics in Ferroelectric Materials: Origin, Challenges and Opportunities
- Ab initio approach to photostriction in classical ferroelectric materials
- Displacement Current in Domain Walls of Bismuth Ferrite
- Strain-induced resonances in the dynamical quadratic magnetoelectric response of multiferroics
- Ab initio finite-temperature elasto-optic response in ferroelectrics: The case of BaTiO 3 and Ba 1 − x Sr x TiO 3
- Temporal and spatial tracking of ultrafast light-induced strain and polarization modulation in a ferroelectric thin film
- Magnetoelastic and magnetoelectric couplings across the antiferromagnetic transition in multiferroic BiFeO3
- Superorders and terahertz acoustic modes in multiferroic BiFeO3/LaFeO3 superlattices
- On the importance of the optical anisotropy in the detection of coherent acoustic phonons in a time-domain Brillouin scattering experiment
- Temporal and spatial tracking of ultrafast light-induced strain and polarization modulation in a ferroelectric thin film
- Magnetoelastic and magnetoelectric couplings across the antiferromagnetic transition in multiferroic BiFeO3
- Superorders and terahertz acoustic modes in multiferroic BiFeO3/LaFeO3 superlattices
- On the importance of the optical anisotropy in the detection of coherent acoustic phonons in a time-domain Brillouin scattering experiment
- Temporal and spatial tracking of ultrafast light-induced strain and polarization modulation in a ferroelectric thin film
- Magnetoelastic and magnetoelectric couplings across the antiferromagnetic transition in multiferroic BiFeO3
- Superorders and terahertz acoustic modes in multiferroic BiFeO3/LaFeO3 superlattices
- On the importance of the optical anisotropy in the detection of coherent acoustic phonons in a time-domain Brillouin scattering experiment
- Strain engineering of electro-optic constants in ferroelectric materials
- Author Correction: Strain engineering of electro-optic constants in ferroelectric materials
- Simulations of light-matter interaction in ferroelectrics and related materials
- Novel static and dynamical properties of electric topological defects
Similar Researchers
Based on overlapping research topics