Cavity-enhanced polarization rotation measurements for low-disturbance probing of atoms

We propose and demonstrate cavity-enhanced polarization-rotation measurement as a means to detect magnetic effects in transparent media with greater sensitivity at equal optical disturbance to the medium. Using the Jones calculus, we compute the effective polarization rotation effect in a Fabry-Pero...

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Veröffentlicht in:Optics express 2021-12, Vol.29 (25), p.40854
Hauptverfasser: Mazzinghi, Chiara, Benedicto Orenes, Daniel, Gomez, Pau, Lucivero, Vito G., Aybar, Enes, Gugnani, Stuti, Mitchell, Morgan W.
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container_end_page
container_issue 25
container_start_page 40854
container_title Optics express
container_volume 29
creator Mazzinghi, Chiara
Benedicto Orenes, Daniel
Gomez, Pau
Lucivero, Vito G.
Aybar, Enes
Gugnani, Stuti
Mitchell, Morgan W.
description We propose and demonstrate cavity-enhanced polarization-rotation measurement as a means to detect magnetic effects in transparent media with greater sensitivity at equal optical disturbance to the medium. Using the Jones calculus, we compute the effective polarization rotation effect in a Fabry-Perot cavity containing a magnetic medium, including losses due to enclosure windows or other sources. The results show that when measuring polarization rotation, collecting the transmitted light has advantages in simplicity and linearity relative to collecting the reflected light. We demonstrate the technique by measuring Faraday rotation in a 87 Rb atomic ensemble in the single-pass and cavity-enhanced geometries, and observe enhancement in good agreement with the theoretical predictions. We also demonstrate shot-noise-limited operation of the enhanced rotation scheme in the small-angle regime.
doi_str_mv 10.1364/OE.438675
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title Cavity-enhanced polarization rotation measurements for low-disturbance probing of atoms
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