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physics.atom-ph2026

Frequency Comb Behavior of Time Crystals in an RF-Driven Dissipative Rydberg System

Dixith Manchaiah, William J. Watterson, Christopher L. Holloway

Driven nonlinear oscillators constitute a universal paradigm for understanding synchronization, frequency pulling, and frequency comb formation in nonequilibrium systems. Here, we…

physics.atom-ph2026

MHz to sub-kHz field detection with an all-dielectric potassium Rydberg-atom sensor

Daniel Hammerland, Rajavardhan Talashila, Dixith Manchaiah +8

Rydberg sensors have significant promise as an alternative to the antenna systems used for sub-MHz frequency communications, where the scale of high-efficiency antennas is often im…

physics.atom-ph2026

Simultaneous Detection, Demodulation, and Angle-of-Arrival Determination of Communication Signals Using a Dual Ladder Rydberg Receiver

Stone B. Oliver, Samuel Berweger, Eugeniy E. Mikhailov +4

In a typical Rydberg mixer, modulated communication signals are detected using a radio frequency (RF) heterodyne technique. The mixer outputs an intermediate frequency (IF), which…

physics.atom-ph2025

Sensitivity Comparison of Rydberg Atom-Based Radio-Frequency Electric Field Detection: Ionization Current Versus Optical Readout

Dangka Shylla, Rajavardhan Talashila, Alexandra Artusio-Glimpse +7

We investigate a technique for detecting radio-frequency (RF) electric fields in a Cesium (Cs) vapor cell at room temperature by collecting charge from ionized Rydberg atoms and co…

physics.atom-ph2024

Primary quantum thermometry of mm-wave blackbody radiation via induced state transfer in Rydberg states of cold atoms

Noah Schlossberger, Andrew P. Rotunno, Stephen P. Eckel +14

Rydberg states of alkali atoms are highly sensitive to electromagnetic radiation in the GHz-to-THz regime because their transitions have large electric dipole moments. Consequently…