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1.
Rev Sci Instrum ; 91(11): 113201, 2020 Nov 01.
Artículo en Inglés | MEDLINE | ID: mdl-33261421

RESUMEN

We present the design and construction of a new experimental apparatus for the trapping of single Ba+ ions in the center of curvature of an optical-quality hemispherical mirror. We describe the layout, fabrication, and integration of the full setup, consisting of a high-optical access monolithic "3D-printed" Paul trap, the hemispherical mirror, a diffraction-limited in-vacuum lens (NA = 0.7) for collection of atomic fluorescence, and a state-of-the art ultra-high vacuum vessel. This new apparatus enables the study of quantum electrodynamics effects such as strong inhibition and enhancement of spontaneous emission and achieves a collection efficiency of the emitted light in a single optical mode of 31%.

2.
Phys Rev Lett ; 108(2): 020603, 2012 Jan 13.
Artículo en Inglés | MEDLINE | ID: mdl-22324666

RESUMEN

We demonstrate theoretically and experimentally the phenomenon of vibrational resonance in a periodic potential, using cold atoms in an optical lattice as a model system. A high-frequency (HF) drive, with a frequency much larger than any characteristic frequency of the system, is applied by phase modulating one of the lattice beams. We show that the HF drive leads to the renormalization of the potential. We used transport measurements as a probe of the potential renormalization. The very same experiments also demonstrate that transport can be controlled by the HF drive via potential renormalization.


Asunto(s)
Luz , Modelos Teóricos , Fenómenos Ópticos , Transporte Biológico , Vibración
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