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Determining the absolute number density of a thermal vapor via photon correlations

Ribeiro, Sofia; Juan-Delgado, Adrián; Gardiner, Simon A.

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Authors

Sofia Ribeiro

Adrián Juan-Delgado



Abstract

We propose a technique to determine the absolute number density N of an alkali-metal vapor confined within a nanocell. This method is based on near-resonant driving of the vapor's constituent atoms and determining the mean interparticle distance (or equivalently the temperature) from the power spectrum associated with the offset photon intensity-intensity correlation function g(2)(τ)−1. In our investigation, we treat the atoms as an average of interacting and radiating dipole pairs randomly positioned within the nanocell. We observe that the power spectrum of the emitted light has a central dip for interparticle distances corresponding to ∼λ/5 and that this result is robust to variations in the driving Rabi frequency and the average detuning. With our proposed method, we can overcome the limitations in defining the absolute number density N, which is currently typically deduced from the temperature of heating elements applied externally to the cell. Published by the American Physical Society 2024

Citation

Ribeiro, S., Juan-Delgado, A., & Gardiner, S. A. (2024). Determining the absolute number density of a thermal vapor via photon correlations. Physical Review A, 110(3), Article L031701. https://doi.org/10.1103/physreva.110.l031701

Journal Article Type Article
Acceptance Date Aug 21, 2024
Online Publication Date Sep 3, 2024
Publication Date Sep 3, 2024
Deposit Date Oct 31, 2024
Publicly Available Date Nov 1, 2024
Journal Physical Review A
Print ISSN 2469-9926
Electronic ISSN 2469-9934
Publisher American Physical Society
Peer Reviewed Peer Reviewed
Volume 110
Issue 3
Article Number L031701
DOI https://doi.org/10.1103/physreva.110.l031701
Public URL https://durham-repository.worktribe.com/output/2995152

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