activity
20242026
collaborators

8 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…

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.mtrl-sci2025

Observation of Coherent Ferrons

Jeongheon Choe, Taketo Handa, Chun-Ying Huang +16

Excitation of ordered quantum phases gives rise to collective modes and quasiparticles, as exemplified by spin waves and magnons emerging from magnetic order. Extending this paradi…

physics.optics2025

Monolithic optoelectronic circuit design for on-chip terahertz applications

Kateryna Kusyak, Benedikt Schulte, Toru Matsuyama +6

We demonstrate a monolithic coplanar stripline platform for on-chip terahertz (THz) generation, transmission, and detection, addressing key challenges of mode purity, bandwidth, an…

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…