activity
20182026
most citedComparing Instrument Spectral Sensitivity of Dissimilar Electromagnetic Haloscopes to Axion Dark Matter and High Frequency Gravitational Waves

29 citations · 81 across the 23 of their papers we have counts for

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Showing 2026Show all

7 papers · 1 filter

physics.ins-det2026

UPLOAD-HELIX: High-Helicity Single-Mode Microwave Haloscope with Low-Noise Interferometric Readout for Ultralight Axion Dark Matter

Robert C. Crew, Emma C. I. Paterson, Maxim Goryachev +5

We propose a superconducting single-mode microwave haloscope based on chiral cavity resonators for the detection of ultralight dark matter axions over the mass range $4\times10^{-1…

quant-ph2026

Coupling phase interference effects in a multimode cavity magnonics system

M. Avicena, G. Bourcin, V. Vlaminck +2

Coupling phases play a decisive yet often overlooked role in cavity magnonics, particularly in complex multimode systems. Here, we investigate phase-mediated interference effects i…

physics.app-ph2026

Probing Light-Matter Interaction with Topological Data Analysis

Timothy Holt, Maxim Goryachev, Jeremy Bourhill

We explore application of Topological Data Analysis to study light matter interaction through scattering response data in different dimensions. This method is robust against Fano r…

quant-ph2026

Multi-mode input-output model for cavity magnonics: phase-resolved control of level repulsion, level attraction, and nonreciprocal transmission

Guillaume Bourcin, Mufti Avicena, Vincent Vlaminck +2

We experimentally validate a unified input--output model that incorporates internal and external coupling phases across multiple cavity modes in a room-temperature cavity magnonic…

physics.app-ph2026

Foil-Mediated Mutual-Impedance in Microwave Cavities with Enhanced Phase Response

Michael T. Hatzon, Graeme R. Flower, Robert C. Crew +4

We formulate and validate an equivalent circuit model describing mutual coupling between three microwave cavity resonators interconnected via thin metallic foils. Each cavity is re…

physics.optics2026

Inverse Design of Three-Dimensional Microwave Cavities for Optimizing Electromagnetic Helicity

Emma Paterson, Jeremy Bourhill, Maxim Goryachev

We present a inverse-design framework framework for systematically engineering three-dimensional microwave cavity resonators that support modes with nonzero electromagnetic helicit…