Raymond Walter
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Also affiliated: University of Liège (2017); University of Cologne (1999)
Formerly Arkansas Distinguished Doctoral Fellow, University of Arkansas through 2017.
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Raymond Walter's research focuses on materials science, particularly the study of ferroelectric and piezoelectric materials. He has investigated the microscopic origins of large piezoelectricity in lead-free (Ba,Ca)(Zr,Ti)O3, exploring its quantum-fluctuation-stabilized orthorhombic ferroelectric ground state. Walter's work also extends to the electrical control of chiral phases in electrotoroidic nanocomposites and natural optical activity in electrotoroidic systems. He has examined strain control of layer-resolved negative capacitance in superlattices and magnetic ordering in single crystals. Walter's scholarly contributions include 28 publications, with an h-index of 8 and a total of 273 citations. He has collaborated with John Ryan at the University of Arkansas at Fayetteville on shared publications.
Metrics
- h-index: 8
- Publications: 24
- Citations: 247
Positions
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Awardee in the U.S. Department of Energy (DOE) Office of Science Graduate Student Research (SCGSR) Program at Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA. 2016–2017Oak Ridge Institute for Science and Education ORCID
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Distinguished Doctoral Fellow 2013–2017University of Arkansas Fayetteville Mathematical Sciences and Physics ORCID
Selected Publications
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Ellipticity of Some Higher Order Conformally Invariant Differential Operators (2022)
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Strain control of layer-resolved negative capacitance in superlattices (2020)
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Third-Order Fermionic and Fourth-Order Bosonic Operators (2020)
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Higher Order Fermionic and Bosonic Operators (2019)
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Temperature and electric field control of the bandgap in electrotoroidic nanocomposites by large-scale ab initio methods (2018)
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Quantum-fluctuation-stabilized orthorhombic ferroelectric ground state in lead-free piezoelectric (Ba,Ca)(Zr,Ti)O3 (2018)
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Construction of Arbitrary Order Conformally Invariant Operators in Higher Spin Spaces (2017)
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Microscopic origins of the large piezoelectricity of leadfree (Ba,Ca)(Zr,Ti)O3 (2017)
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Toy model for uncommon spin–orbit-driven spin-torque terms (2017)
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Hermitian Clifford analysis and its connections with representation theory (2017)
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Higher Order Fermionic and Bosonic Operators on Cylinders and Hopf Manifolds (2016)
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Construction of Arbitrary Order Conformally Invariant Operators in Higher Spin Spaces (2016)
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Electrical Control of Chiral Phases in Electrotoroidic Nanocomposites (2015)
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Higher order fermionic and bosonic operators on cylinders and Hopf manifolds (2015)
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Revisiting galvanomagnetic effects in conducting ferromagnets (2014)
Collaboration Network
Top Collaborators
- Natural optical activity and its control by electric field in electrotoroidic systems
- Quantum-fluctuation-stabilized orthorhombic ferroelectric ground state in lead-free piezoelectric (Ba,Ca)(Zr,Ti)O3
- Strain control of layer-resolved negative capacitance in superlattices
- Revisiting galvanomagnetic effects in conducting ferromagnets
- Electrical Control of Chiral Phases in Electrotoroidic Nanocomposites
Showing 5 of 7 shared publications
- Construction of Arbitrary Order Conformally Invariant Operators in Higher Spin Spaces
- Higher Order Fermionic and Bosonic Operators
- Third-Order Fermionic and Fourth-Order Bosonic Operators
- Higher Order Fermionic and Bosonic Operators on Cylinders and Hopf Manifolds
- Construction of Arbitrary Order Conformally Invariant Operators in Higher Spin Spaces
Showing 5 of 7 shared publications
- Construction of Arbitrary Order Conformally Invariant Operators in Higher Spin Spaces
- Higher Order Fermionic and Bosonic Operators
- Third-Order Fermionic and Fourth-Order Bosonic Operators
- Higher Order Fermionic and Bosonic Operators on Cylinders and Hopf Manifolds
- Construction of Arbitrary Order Conformally Invariant Operators in Higher Spin Spaces
Showing 5 of 7 shared publications
- Microscopic origins of the large piezoelectricity of leadfree (Ba,Ca)(Zr,Ti)O3
- Quantum-fluctuation-stabilized orthorhombic ferroelectric ground state in lead-free piezoelectric (Ba,Ca)(Zr,Ti)O3
- Electrical Control of Chiral Phases in Electrotoroidic Nanocomposites
- Temperature and electric field control of the bandgap in electrotoroidic nanocomposites by large-scale ab initio methods
- Microscopic origins of the large piezoelectricity of leadfree (Ba,Ca)(Zr,Ti)O3
- Quantum-fluctuation-stabilized orthorhombic ferroelectric ground state in lead-free piezoelectric (Ba,Ca)(Zr,Ti)O3
- Electrical Control of Chiral Phases in Electrotoroidic Nanocomposites
- Temperature and electric field control of the bandgap in electrotoroidic nanocomposites by large-scale ab initio methods
- Natural optical activity and its control by electric field in electrotoroidic systems
- Electrical Control of Chiral Phases in Electrotoroidic Nanocomposites
- Temperature and electric field control of the bandgap in electrotoroidic nanocomposites by large-scale ab initio methods
- Microscopic origins of the large piezoelectricity of leadfree (Ba,Ca)(Zr,Ti)O3
- Quantum-fluctuation-stabilized orthorhombic ferroelectric ground state in lead-free piezoelectric (Ba,Ca)(Zr,Ti)O3
- Strain control of layer-resolved negative capacitance in superlattices
- Revisiting galvanomagnetic effects in conducting ferromagnets
- Toy model for uncommon spin–orbit-driven spin-torque terms
- Strain control of layer-resolved negative capacitance in superlattices
- Toy model for uncommon spin–orbit-driven spin-torque terms
- Quantum-fluctuation-stabilized orthorhombic ferroelectric ground state in lead-free piezoelectric (Ba,Ca)(Zr,Ti)O3
- Toy model for uncommon spin–orbit-driven spin-torque terms
- Microscopic origins of the large piezoelectricity of leadfree (Ba,Ca)(Zr,Ti)O3
- Quantum-fluctuation-stabilized orthorhombic ferroelectric ground state in lead-free piezoelectric (Ba,Ca)(Zr,Ti)O3
- Microscopic origins of the large piezoelectricity of leadfree (Ba,Ca)(Zr,Ti)O3
- Quantum-fluctuation-stabilized orthorhombic ferroelectric ground state in lead-free piezoelectric (Ba,Ca)(Zr,Ti)O3
- Microscopic origins of the large piezoelectricity of leadfree (Ba,Ca)(Zr,Ti)O3
- Quantum-fluctuation-stabilized orthorhombic ferroelectric ground state in lead-free piezoelectric (Ba,Ca)(Zr,Ti)O3
- Natural optical activity and its control by electric field in electrotoroidic systems
- Natural optical activity and its control by electric field in electrotoroidic systems
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