Julian presents the group’s microwave-electrodynamics work on diagnosing nodal pairing in Weyl-semimetal MoTe₂ at Unconventional Superconductors and Magnets 2026. Watch the recorded talk.
Phys.org features Madisen Holbrook, Julian, and collaborators' Nature Physics work imaging the obstructed atomic limit of WSe₂, where the valence-band charge density shifts from atomic sites at Γ to hollow sites at K.
Aiden joined the group as an undergraduate researcher. He is studying Floquet topology, driven quantum systems, and quantum geometry.
Ilia, working with Tobias Holder, showed how hybridized topological zero modes control the low-frequency critical dynamics of a disordered chain. The work is published in Physical Review Letters.
We worked with the Pasupathy Research Group to use scanning tunnelling microscopy to image TMD band topology directly in real space. The work is published in Nature Physics.
Our group co-organized the WE-Heraeus seminar “Topology and Geometry: Novel Concepts in 3D Quantum Transport on the Mesoscale” in Hamburg, bringing together theory and experiment on topology, quantum geometry, and mesoscopic transport.
Nish worked with Philip Moll and Tobias Holder to connect quantum geometry to hidden material length and time scales. The review is published in Nature Reviews Physics.
Victor joined the group as a master's student in 2026, working on coherent-state packing and exact diagonalization in Landau levels. He is now a PhD student with Johannes Mitscherling at the University of Würzburg.
We worked with the Basov Laboratory to trace interaction-enhanced plasmon dynamics and Drude weight in graphene. The preprint is available on arXiv.
We worked with Kin Chung Fong’s group to use kinetic inductance as a probe of unconventional superconductivity in Weyl-semimetal MoTe2. The preprint is available on arXiv.
Our manuscript uncovers a cyclic organization of Landau levels in transition-metal dichalcogenide semiconductors and is now on arXiv.