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Microwave spectroscopy of radio-frequency dressed 87Rb (2019)
Journal Article
A. Sinuco-Leon, G., M. Garraway, B., Mas, H., Pandey, S., Vasilakis, G., Bolpasi, V., …Fernholz, T. (2019). Microwave spectroscopy of radio-frequency dressed 87Rb. Physical Review A, 100(5), https://doi.org/10.1103/PhysRevA.100.053416

We study the hyperfine spectrum of atoms of $^{87}$Rb dressed by a radio-frequency field, and present experimental results in three different situations: freely falling atoms, atoms trapped in an optical dipole trap and atoms in an adiabatic radio-fr... Read More about Microwave spectroscopy of radio-frequency dressed 87Rb.

Ring-shaped atom-trap lattices using multipole dressing fields (2019)
Journal Article
Gentile, F., Johnson, J., Poulios, K., & Fernholz, T. Ring-shaped atom-trap lattices using multipole dressing fields. Manuscript submitted for publication

We present a method for the creation of closed-loop lattices for ultra-cold atoms using dressed potentials. We analytically describe the generation of trap lattices that are state-dependent, with dynamically controlled lattice depths and positioning.... Read More about Ring-shaped atom-trap lattices using multipole dressing fields.

Voigt-effect-based three-dimensional vector magnetometer (2019)
Journal Article
Pyragius, T., Marin Florez, H., & Fernholz, T. (2019). Voigt-effect-based three-dimensional vector magnetometer. Physical Review A, 100(2), https://doi.org/10.1103/PhysRevA.100.023416

We describe a method to dispersively detect all three vector components of an external magnetic field using alkali atoms based on the Voigt effect. Our method relies on measuring the linear birefringence of the radio frequency dressed atomic medium v... Read More about Voigt-effect-based three-dimensional vector magnetometer.