activity
20242026
collaborators

5 papers

quant-ph2026

Rydberg Receivers for Space Applications

Gianluca Allinson, Mark Bason, Alexis Bonnin +10

Rydberg-atom sensors convert radiofrequency, microwave and terahertz fields into optical signals with SI-traceable calibration, high sensitivity, and broad tunability. This review…

physics.optics2025

Electric-field metrology of a terahertz frequency comb using Rydberg atoms

Wiktor Krokosz, Jan Nowosielski, Bartosz Kasza +4

Terahertz radiation finds an increasing number of applications, yet efficient generation and detection remain a challenge and an active area of research. In particular, the precise…

physics.atom-ph2025

Optically-biased Rydberg microwave receiver enabled by hybrid nonlinear interferometry

Sebastian Borówka, Mateusz Mazelanik, Wojciech Wasilewski +1

The coupling of Rydberg vapour medium to both microwave and optical fields allows harnessing the merits of all-optical detection, e.g. weak disruption of the measured field and inv…

physics.atom-ph2024

Atomic-optical interferometry in fractured loops: a general solution for Rydberg radio frequency receivers

Bartosz Kasza, Sebastian Borówka, Wojciech Wasilewski +1

The development of novel radio frequency atomic receivers brings attention to the theoretical description of atom-light interactions in sophisticated, multilevel schemes. Of specia…

physics.app-ph2024

A Rydberg atom based system for benchmarking mmWave automotive radar chips

Sebastian Borówka, Wiktor Krokosz, Mateusz Mazelanik +2

Rydberg atomic sensors and receivers have enabled sensitive and traceable measurements of RF fields at a wide range of frequencies. Here we demonstrate the detection of electric fi…