Match tier Confirmed
Presence Current · Arkansas
Last published 2026
Sources OpenAlex · ORCID
Refreshed 2026-08-15

Suyash Rijal

Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.

Researcher

Faculty Researcher

5 h-index 10 pubs 119 cited

Biography and Research Information

OverviewAI-generated summary

Suyash Rijal's research centers on the dynamics and control of topological defects in ferroelectric materials, particularly at the nanoscale. His work investigates the formation mechanisms and stability of complex structures such as spherical ferroelectric solitons, bubble domains, and quasiordered superstructures of electric bubbles. Rijal has explored methods for controlling topological defect transitions in lead zirconate titanate heterostructures and designed frustration in two-dimensional magnetic systems through uniaxial strain.

Metrics

  • h-index: 5
  • Publications: 10
  • Citations: 119

Selected Publications

  • Imaging Topological Vortex Phonons at the Nanoscale (2026)
    Microscopy and Microanalysis DOI OpenAlex
  • Formation mechanism of quasiordered superstructures of electric bubbles (2025)
    Physical review. B./Physical review. B 2 citations DOI OpenAlex
  • Quasihexagonal arrays of electric-skyrmion bubbles in thin-film ferroelectrics: Pattern formation and structure (2024)
    Physical review. B./Physical review. B 2 citations DOI OpenAlex
  • Dynamics of Polar Vortex Crystallization (2024)
    Physical Review Letters 11 citations DOI OpenAlex
  • Spherical ferroelectric solitons (2023)
    Nature Materials 53 citations DOI OpenAlex
  • Stability of ferroelectric bubble domains (2023)
    Physical Review Materials 22 citations DOI OpenAlex
  • Controlling topological defect transitions in nanoscale lead zirconate titanate heterostructures (2021)
    Physical Review Materials 14 citations DOI OpenAlex
  • Designing frustration in two-dimensional magnetic systems via the application of uniaxial strain (2021)
    Physical review. B./Physical review. B 11 citations DOI OpenAlex

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Collaboration Network

10 Collaborators 4 Institutions 3 Countries

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