activity
20242026
collaborators

10 papers

cond-mat.mes-hall2026

Fluctuation engineering in cavity quantum materials

Hope M Bretscher, Lorenzo Graziotto, Marios H Michael +14

Coupling tailored electromagnetic fluctuations to materials provides a resource for controlling correlated quantum matter. By structuring the frequency, spatial, and modal distribu…

quant-ph2026

Cavity Control of Strongly Correlated Electrons Beyond Resonant Coupling

Lukas Grunwald, Xinle Cheng, Emil Viñas Boström +4

Interfacing materials with electromagnetic cavities offers a route to modify equilibrium properties through structured vacuum fluctuations. The coupling between light and correlate…

cond-mat.supr-con2026

Finite-momentum Cooper plasmons in superconducting terahertz microcavities

Alex M. Potts, Marios H. Michael, Gunda Kipp +12

The phase mode of a superconductor's order parameter encodes fundamental information about pairing and dissipation, but is typically inaccessible at low frequencies due to the Ande…

cond-mat.mes-hall2026

Response regimes in on-chip THz spectroscopy

Gunda Kipp, Marios H. Michael, Alexander M. Potts +6

On-chip THz spectroscopy enables quantitative measurements of the optical conductivity of sub-wavelength 2D materials by tightly confining THz fields in metallic transmission line…

cond-mat.supr-con2025

Visualizing a Terahertz Superfluid Plasmon in a Two-Dimensional Superconductor

Alexander von Hoegen, Tommy Tai, Clifford J. Allington +13

The superconducting gap defines the fundamental energy scale for the emergence of dissipationless transport and collective phenomena in a superconductor. In layered high-temperatur…

cond-mat.mes-hall2025

Purcell enhancement of photogalvanic currents in a van der Waals plasmonic self-cavity

Xinyu Li, Jesse Hagelstein, Gunda Kipp +23

Cavities provide a means to manipulate the optical and electronic responses of quantum materials by selectively enhancing light-matter interaction at specific frequencies and momen…