Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
S. Puri's research focuses on the optical and mechanical properties of two-dimensional (2D) materials, particularly transition metal dichalcogenides like MoSe 2 and MoS 2. Their work investigates how external factors, such as strain and substrate interactions, influence phenomena like second-harmonic generation and exciton behavior in these materials. Puri has also studied photostriction in layered ferroelectrics and the nonlinear anisotropy in halide compounds. Recent publications include work on "Substrate Interference and Strain in the Second-Harmonic Generation from MoSe 2 Monolayers" and "Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition," both published in 2024. Other recent publications explore "Deformation-Potential-Driven Photostriction in Layered Ferroelectrics" and "Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain." Puri has collaborated with researchers at the University of Arkansas at Fayetteville, including Hugh Churchill and Jonathan Mishler.
Metrics
- h-index: 2
- Publications: 2
- Citations: 25
Positions
-
Graduate Research Assistant 2021–presentUniversity of Arkansas at Fayetteville Physics ORCID
Selected Publications
-
Deformation-Potential-Driven Photostriction in Layered Ferroelectrics (2026)
-
Nonlinear anisotropy in phase-tuned wide-gap halides (2026)
-
Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain (2026)
-
Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition (2024)
-
Substrate Interference and Strain in the Second-Harmonic Generation from MoSe 2 Monolayers (2024)
Collaboration Network
Top Collaborators
- 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
- Nonlinear anisotropy in phase-tuned wide-gap halides
- Deformation-Potential-Driven Photostriction in Layered Ferroelectrics
- Substrate Interference and Strain in the Second-Harmonic Generation from MoSe 2 Monolayers
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- 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
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain
- Substrate Interference and Strain in the Second-Harmonic Generation from MoSe 2 Monolayers
- Substrate Interference and Strain in the Second-Harmonic Generation from MoSe 2 Monolayers
- Substrate Interference and Strain in the Second-Harmonic Generation from MoSe 2 Monolayers
- Substrate Interference and Strain in the Second-Harmonic Generation from MoSe 2 Monolayers
- Substrate Interference and Strain in the Second-Harmonic Generation from MoSe 2 Monolayers
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
Similar Researchers
Based on overlapping research topics