José D. Mella
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Role not yet determined Is this you? Add your title
Also affiliated: Pennsylvania State University (2016); Adolfo Ibáñez University (2023–2024); Center for the Development of Nanoscience and Nanotechnology (2015–2020); Massachusetts Institute of Technology (2016); University of Chile (2015–2024)
Formerly Arkansas Postdoctoral Research, University of Arkansas through 2027.
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
José D. Mella's research focuses on theoretical condensed matter physics, investigating the properties of novel materials. His work has explored high-temperature superconductivity in materials like Mg2B4C2 and the magnonic valley Hall effect in van der Waals heterostructures. Mella has also studied the topological properties of lattices and the development of chemical theories for topological insulators. His publications include research on hematene as a 2D magnetic material, confinement effects in nanocrystalline diamond, and the use of metal-nanotube composites as radiation-resistant materials. More recently, his research has extended to predicting the potential of BiS2-type pnictogen dichalcogenide monolayers for optoelectronic applications. Mella's scholarship includes 21 publications with 259 citations and an h-index of 9.
Metrics
- h-index: 9
- Publications: 21
- Citations: 266
Positions
-
Postdoctoral Research 2024–2027University of Arkansas at Fayetteville Physics ORCID
-
Post doctorate 2020–2023University of Chile Physics Department ORCID
Selected Publications
-
Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain (2026)
Collaboration Network
Top Collaborators
- Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain
- Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain
- Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain
- Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain
Similar Researchers
Based on overlapping research topics