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Background-free calibrated electric-field imaging with Rydberg-state fluorescence and Autler-Townes splitting
Gabriel Ko, Wiktor Krokosz, Mateusz Mazelanik +2
We demonstrate a spatially resolved method for imaging millimeter-wave (mmWave) electric fields using Rydberg-state fluorescence in a warm atomic vapor. By utilizing a multi-photon…
Coherent terahertz field tomographic imaging in warm Rydberg vapors
Jan Nowosielski, Marcin JastrzÄbski, Wojciech Wasilewski +2
Rydberg atom-based sensors have emerged as highly sensitive tools for terahertz (THz) metrology, yet most current imaging techniques discard crucial phase information. In this Lett…
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…
A warm Rydberg atom-based quadrature amplitude-modulated receiver
Jan Nowosielski, Marcin JastrzÄbski, Pavel Halavach +5
Rydberg atoms exhibit remarkable sensitivity to electromagnetic fields, making them promising candidates for revolutionizing field sensors. Unlike conventional antennas, they neith…