Hiroyuki Nakamura
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Associate Professor
Also affiliated: University of Stuttgart (2016); Max Planck Institute for Solid State Research (2016–2020); The University of Tokyo (2016)
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Hiroyuki Nakamura's research focuses on the electronic and spin properties of advanced materials, particularly in the context of condensed matter physics and materials science. His work investigates phenomena such as spin splitting, persistent spin textures, and interlayer coupling in various material systems, including two-dimensional materials like WSe2 and NbS2, as well as novel Dirac materials like Sr3PbO. Nakamura also explores the mechanical and electronic properties of strained materials, contributing to the understanding of how structural modifications influence material behavior.
His research has been supported by federal grants, including an NSF I-Corps grant for the development of a deep ultraviolet laser. Nakamura collaborates with researchers at the University of Arkansas at Fayetteville, including Jonathan Mishler, Salvador Barraza-Lopez, and Luis Enrique Rosas-Hernandez, with whom he has co-authored multiple publications. His recent work also includes investigations into ultrafast interfacial energy transfer in Van der Waals heterostructures and the characterization of surfaces in polar materials.
With a publication record of 17 papers and an h-index of 6, Nakamura actively contributes to the field. His recent publications appear in journals covering condensed matter physics and materials science, reflecting his ongoing engagement with current research challenges and advancements in his areas of expertise.
Metrics
- h-index: 6
- Publications: 16
- Citations: 173
Positions
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Associate Professor 2025–presentUniversity of Arkansas Department of Physics ORCID
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Assistant Professor 2019–2025University of Arkansas Physics ORCID
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Max Planck Institute for Solid State Research 2013–2019ORCID
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Osaka University 2008–2013Materials Physics ORCID
Selected Publications
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Deformation-Potential-Driven Photostriction in Layered Ferroelectrics (2026)
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Nonlinear anisotropy in phase-tuned wide-gap halides (2026)
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Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain (2026)
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STM and ARPES characterization of quality of GeSn grown on Ge(001) for atomic ordering investigations (2026)
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Growth of Ge-Sn Digital Alloys toward Group IV Topological Materials (2025)
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Substrate Interference and Strain in the Second-Harmonic Generation from MoSe 2 Monolayers (2024)
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Mechanical, electronic, optical, piezoelectric and ferroic properties of strained graphene and other strained monolayers and multilayers: an update (2023)
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8Li βNMR studies of Epitaxial Thin Films of the 3D topological Dirac semimetal Sr3SnO (2023)
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Observation of ultrafast interfacial Meitner-Auger energy transfer in a Van der Waals heterostructure (2023)
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Molecular beam epitaxy of antiperovskite oxides (2022)
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Probing the interlayer coupling in 2H−NbS2 via soft x-ray angle-resolved photoemission spectroscopy (2022)
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Spin-polarized electronic states and atomic reconstructions at antiperovskite Sr3SnO(001) polar surfaces (2021)
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Purely Cubic Spin Splittings with Persistent Spin Textures (2020)
Federal Grants 1 $50,000 total
Collaboration Network
Top Collaborators
- Probing the interlayer coupling in 2H−NbS2 via soft x-ray angle-resolved photoemission spectroscopy
- Spin-polarized electronic states and atomic reconstructions at antiperovskite Sr3SnO(001) polar surfaces
- Molecular beam epitaxy of antiperovskite oxides
- 8Li βNMR studies of Epitaxial Thin Films of the 3D topological Dirac semimetal Sr3SnO
- Purely Cubic Spin Splittings with Persistent Spin Textures
- Spin-polarized electronic states and atomic reconstructions at antiperovskite Sr3SnO(001) polar surfaces
- Deformation-Potential-Driven Photostriction in Layered Ferroelectrics
- Observation of ultrafast interfacial Meitner-Auger energy transfer in a Van der Waals heterostructure
- Molecular beam epitaxy of antiperovskite oxides
- 8Li βNMR studies of Epitaxial Thin Films of the 3D topological Dirac semimetal Sr3SnO
- Mechanical, electronic, optical, piezoelectric and ferroic properties of strained graphene and other strained monolayers and multilayers: an update
- Substrate Interference and Strain in the Second-Harmonic Generation from MoSe 2 Monolayers
- Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain
- Purely Cubic Spin Splittings with Persistent Spin Textures
- Spin-polarized electronic states and atomic reconstructions at antiperovskite Sr3SnO(001) polar surfaces
- Purely Cubic Spin Splittings with Persistent Spin Textures
- Spin-polarized electronic states and atomic reconstructions at antiperovskite Sr3SnO(001) polar surfaces
- Purely Cubic Spin Splittings with Persistent Spin Textures
- Spin-polarized electronic states and atomic reconstructions at antiperovskite Sr3SnO(001) polar surfaces
- Observation of ultrafast interfacial Meitner-Auger energy transfer in a Van der Waals heterostructure
- Probing the interlayer coupling in 2H−NbS2 via soft x-ray angle-resolved photoemission spectroscopy
- STM and ARPES characterization of quality of GeSn grown on Ge(001) for atomic ordering investigations
- Growth of Ge-Sn Digital Alloys toward Group IV Topological Materials
- Purely Cubic Spin Splittings with Persistent Spin Textures
- Purely Cubic Spin Splittings with Persistent Spin Textures
- Purely Cubic Spin Splittings with Persistent Spin Textures
- Purely Cubic Spin Splittings with Persistent Spin Textures
- Spin-polarized electronic states and atomic reconstructions at antiperovskite Sr3SnO(001) polar surfaces
- Observation of ultrafast interfacial Meitner-Auger energy transfer in a Van der Waals heterostructure
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