Cavity-enabled real-time observation of individual atomic collisions

Fuente: arXiv
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Autori principali: Peters, Matthew L., Wang, Guoqing, Spierings, David C., Drucker, Niv, Hu, Beili, Chen, Yu-Ting, Vuletić, Vladan
Natura: Preprint
Pubblicazione: 2024
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author Peters, Matthew L.
Wang, Guoqing
Spierings, David C.
Drucker, Niv
Hu, Beili
Chen, Yu-Ting
Vuletić, Vladan
author_facet Peters, Matthew L.
Wang, Guoqing
Spierings, David C.
Drucker, Niv
Hu, Beili
Chen, Yu-Ting
Vuletić, Vladan
contents Using the strong dispersive coupling to a high-cooperativity cavity, we demonstrate fast and non-destructive number-resolved detection of atoms in optical tweezers. We observe individual atom-atom collisions, quantum state jumps, and atom loss events with a time resolution of $100\ μ$s through continuous measurement of cavity transmission. Using adaptive feedback control in combination with the non-destructive measurements, we further prepare a single atom with $92(2)\%$ probability.
format Preprint
id arxiv_https___arxiv_org_abs_2411_12622
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Cavity-enabled real-time observation of individual atomic collisions
Peters, Matthew L.
Wang, Guoqing
Spierings, David C.
Drucker, Niv
Hu, Beili
Chen, Yu-Ting
Vuletić, Vladan
Quantum Physics
Atomic Physics
Using the strong dispersive coupling to a high-cooperativity cavity, we demonstrate fast and non-destructive number-resolved detection of atoms in optical tweezers. We observe individual atom-atom collisions, quantum state jumps, and atom loss events with a time resolution of $100\ μ$s through continuous measurement of cavity transmission. Using adaptive feedback control in combination with the non-destructive measurements, we further prepare a single atom with $92(2)\%$ probability.
title Cavity-enabled real-time observation of individual atomic collisions
topic Quantum Physics
Atomic Physics
url https://arxiv.org/abs/2411.12622