Takayuki Hironaka
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Also affiliated: Toray Research Center, Inc. (Japan) (2001); The University of Osaka (2010)
Research Areas
Biography and Research Information
OverviewAI-generated summary
Takayuki Hironaka's research has focused on the study of semiconductor materials and devices. His work has involved investigating the properties and applications of various semiconductor materials, with a particular emphasis on their use in electronic components. Hironaka has explored advancements in semiconductor technology, contributing to the understanding of material performance and device fabrication. His research aims to enhance the efficiency and functionality of semiconductor-based systems.
Metrics
- h-index: 4
- Publications: 7
- Citations: 117
Selected Publications
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Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals (2019)
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Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals (2019)
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Toward Single Atom Chains with Exfoliated Tellurium (2017)
Collaboration Network
Top Collaborators
- Toward Single Atom Chains with Exfoliated Tellurium
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Toward Single Atom Chains with Exfoliated Tellurium
- Toward Single Atom Chains with Exfoliated Tellurium
- Toward Single Atom Chains with Exfoliated Tellurium
- Toward Single Atom Chains with Exfoliated Tellurium
- Toward Single Atom Chains with Exfoliated Tellurium
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