Course
Condensed Matter
Electrons, spins and phases in solids.
Topological materials
- Can light's frequency act as an extra dimension for topology?
- Do topological edge states need a crystal lattice?
- Can topological insulators triple terahertz frequencies efficiently?
- Can topological corner states survive inside the bulk energy band?
- How do hot electrons change a Weyl semimetal's direction-dependence?
- + 6 more →
Superconductivity
- Can one compact photon detector carry gigabit laser links from space?
- Can a water-based ink of 2D sheets superconduct?
- Can stretching a cuprate vertically raise its superconducting temperature?
- Does a twisted MoTe2 bilayer superconduct in an unusual way?
- Does aluminum superconduct better when only a few atoms thick?
- + 6 more →
Two-dimensional materials
- Can one graphene detector be sensitive, fast and broadband at once?
- Can you twist layers after a 2D stack is built?
- What happens when graphene is aligned to two hBN layers at once?
- Can twisted photonic crystals mimic magic-angle graphene for light?
- Does adding a third twisted layer trap excitons more tightly?
- + 3 more →
Magnetism and spintronics
- How does an electric current flip a thick antiferromagnet?
- Is the Rashba spin texture really as simple as textbooks say?
- Can a small voltage flip magnetic coupling between thin layers?
- Can magnetic order switch how excitons behave in a crystal?
- Can magnetic disorder make a metal shrink when it is heated?
- + 3 more →