Suyash Rijal
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Biography and Research Information
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Suyash Rijal's research focuses on the dynamics and control of topological defects in ferroelectric materials, particularly at the nanoscale. His work investigates phenomena such as spherical ferroelectric solitons, the stability of ferroelectric bubble domains, and the formation mechanisms of quasiordered superstructures of electric bubbles. Rijal also studies the design of frustration in two-dimensional magnetic systems through the application of uniaxial strain. His recent publications explore the dynamics of polar vortex crystallization and quasihexagonal arrays of electric-skyrmion bubbles in thin-film ferroelectrics. Rijal collaborates with several researchers at the University of Arkansas at Fayetteville, including Yousra Nahas and Sergei Prokhorenko, with whom he has co-authored multiple publications. His scholarship metrics include an h-index of 5, with 11 total publications and 126 citations.
Metrics
- h-index: 5
- Publications: 11
- Citations: 126
Selected Publications
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Novel static and dynamical properties of electric topological defects (2026)
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Imaging Topological Vortex Phonons at the Nanoscale (2026)
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Formation mechanism of quasiordered superstructures of electric bubbles (2025)
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Quasihexagonal arrays of electric-skyrmion bubbles in thin-film ferroelectrics: Pattern formation and structure (2024)
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Dynamics of Polar Vortex Crystallization (2024)
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Spherical ferroelectric solitons (2023)
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Stability of ferroelectric bubble domains (2023)
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Controlling topological defect transitions in nanoscale lead zirconate titanate heterostructures (2021)
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Designing frustration in two-dimensional magnetic systems via the application of uniaxial strain (2021)
Collaboration Network
Top Collaborators
- Spherical ferroelectric solitons
- Stability of ferroelectric bubble domains
- Controlling topological defect transitions in nanoscale lead zirconate titanate heterostructures
- Dynamics of Polar Vortex Crystallization
- Designing frustration in two-dimensional magnetic systems via the application of uniaxial strain
Showing 5 of 8 shared publications
- Spherical ferroelectric solitons
- Stability of ferroelectric bubble domains
- Controlling topological defect transitions in nanoscale lead zirconate titanate heterostructures
- Dynamics of Polar Vortex Crystallization
- Quasihexagonal arrays of electric-skyrmion bubbles in thin-film ferroelectrics: Pattern formation and structure
Showing 5 of 7 shared publications
- Spherical ferroelectric solitons
- Stability of ferroelectric bubble domains
- Controlling topological defect transitions in nanoscale lead zirconate titanate heterostructures
- Dynamics of Polar Vortex Crystallization
- Quasihexagonal arrays of electric-skyrmion bubbles in thin-film ferroelectrics: Pattern formation and structure
Showing 5 of 7 shared publications
- Spherical ferroelectric solitons
- Stability of ferroelectric bubble domains
- Controlling topological defect transitions in nanoscale lead zirconate titanate heterostructures
- Spherical ferroelectric solitons
- Stability of ferroelectric bubble domains
- Controlling topological defect transitions in nanoscale lead zirconate titanate heterostructures
- Quasihexagonal arrays of electric-skyrmion bubbles in thin-film ferroelectrics: Pattern formation and structure
- Formation mechanism of quasiordered superstructures of electric bubbles
- Novel static and dynamical properties of electric topological defects
- Spherical ferroelectric solitons
- Stability of ferroelectric bubble domains
- Designing frustration in two-dimensional magnetic systems via the application of uniaxial strain
- Controlling topological defect transitions in nanoscale lead zirconate titanate heterostructures
- Quasihexagonal arrays of electric-skyrmion bubbles in thin-film ferroelectrics: Pattern formation and structure
- Imaging Topological Vortex Phonons at the Nanoscale
- Imaging Topological Vortex Phonons at the Nanoscale
- Imaging Topological Vortex Phonons at the Nanoscale
- Novel static and dynamical properties of electric topological defects
- Novel static and dynamical properties of electric topological defects
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