Lucas Baldo Mesa Casa
PhD student at Department of Physics and Astronomy; Materials Theory
- E-mail:
- lucas.casa@physics.uu.se
- Visiting address:
- Ångströmlaboratoriet, Regementsvägen 10
- Postal address:
- Box 516
751 37 UPPSALA
PhD student at Department of Physics and Astronomy; Materials Theory; Quantum Matter Theory
- E-mail:
- lucas.casa@physics.uu.se
- Visiting address:
- Ångströmlaboratoriet, Regementsvägen 10
- Postal address:
- Box 516
751 37 UPPSALA
Short presentation
I'm a PhD student in Annica Black-Schaffer's group, where I study materials that show unconventional superconductivity. I have worked theoretically with semiconductor-superconductor hybrid structures and, more recently, twisted bilayer graphene.
Keywords
- superconductivity

Publications
Recent publications
Part of Superconductors Science and Technology, 2023
- DOI for Zero-frequency supercurrent susceptibility signatures of trivial and topological zero-energy states in nanowire junctions
- Download full text (pdf) of Zero-frequency supercurrent susceptibility signatures of trivial and topological zero-energy states in nanowire junctions
Defect-induced band restructuring and length scales in twisted bilayer graphene
Part of Physical Review B, 2023
- DOI for Defect-induced band restructuring and length scales in twisted bilayer graphene
- Download full text (pdf) of Defect-induced band restructuring and length scales in twisted bilayer graphene
All publications
Articles in journal
Part of Superconductors Science and Technology, 2023
- DOI for Zero-frequency supercurrent susceptibility signatures of trivial and topological zero-energy states in nanowire junctions
- Download full text (pdf) of Zero-frequency supercurrent susceptibility signatures of trivial and topological zero-energy states in nanowire junctions
Defect-induced band restructuring and length scales in twisted bilayer graphene
Part of Physical Review B, 2023
- DOI for Defect-induced band restructuring and length scales in twisted bilayer graphene
- Download full text (pdf) of Defect-induced band restructuring and length scales in twisted bilayer graphene