Visualization and selective manipulation of sub-terahertz whispering gallery modes

A Anna R. Petersen (Department of Physics, University of Otago 1 , Dunedin,) P Pablo Paulsen (Department of Physics, University of Otago 1 , Dunedin,) F Florian Sedlmeir (Department of Physics, University of Otago 1 , Dunedin,) N Nicholas J. Lambert (Department of Physics, University of Otago 1 , Dunedin,) H Harald G. L. Schwefel (Department of Physics, University of Otago 1 , Dunedin,) M Mallika Irene Suresh (Department of Physics, University of Otago 1 , Dunedin,)

Abstract

The development of technologies based on electromagnetic resonant structures usually relies on precise understanding of the spatial form of the supported modes. In millimeter-sized resonators that support millimeter-wave modes, this is often done numerically. However, simulations often fail to accurately predict the resonance frequencies and mode numbers. Such discrepancies can arise from uncertainties in the dielectric properties of the materials or inaccuracies in the geometric characterization of the structures. Here, we experimentally map the spatial distribution of terahertz modes in a silicon disk resonator by perturbing the mode with a metal needle scanned across the disk. This allows us to identify the modes, and hence to design a perturbative periodic structure to selectively manipulate specific modes. This technique could be useful for targeted tuning of such modes for spectral engineering.

Article Details

Volume / Issue Vol. 127, Issue 21
Published November 24, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (6)

A

Anna R. Petersen

Department of Physics, University of Otago 1 , Dunedin,

P

Pablo Paulsen

Department of Physics, University of Otago 1 , Dunedin,

F

Florian Sedlmeir

Department of Physics, University of Otago 1 , Dunedin,

N

Nicholas J. Lambert

Department of Physics, University of Otago 1 , Dunedin,

H

Harald G. L. Schwefel

Department of Physics, University of Otago 1 , Dunedin,

M

Mallika Irene Suresh

Department of Physics, University of Otago 1 , Dunedin,