1 citations · 1 across the 2 of their papers we have counts for
10 papers
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…
Hybrid quantum memory leveraging slow-light and gradient-echo duality
StanisÅaw Kurzyna, Mateusz Mazelanik, Wojciech Wasilewski +1
We demonstrate a hybrid quantum memory that combines Gradient Echo Memory (GEM) and Electromagnetically Induced Transparency (EIT) protocols for reversible mapping between light an…
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…
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…
Microwave-field quantum metrology with inherent robustness against detection losses enabled by Rydberg interactions
StanisÅaw Kurzyna, Bartosz Niewelt, Mateusz Mazelanik +3
Quantum sensing and metrology present one of the most promising near-term applications in the field of quantum technologies, with quantum sensors enabling unprecedented precision i…
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…