Projects per year
Abstract
Spin-polarized atomic ensembles probed by light based on the Faraday interaction are a versatile platform for numerous applications in quantum metrology and quantum information processing. Here we consider an ensemble of Alkali atoms that are continuously optically pumped and probed. Due to the collective scattering of photons at large optical depth, the steady state of atoms does not correspond to an uncorrelated tensor-product state, as is usually assumed. We introduce a self-consistent method to approximate the steady state including the pair correlations, taking into account the multilevel structure of atoms. We find and characterize regimes of Raman lasing, akin to the model of a superradiant laser. We determine the spectrum of the collectively scattered photons, which also characterizes the coherence time of the collective spin excitations on top of the stationary correlated mean-field state, as relevant for applications in metrology and quantum information.
| Original language | English |
|---|---|
| Article number | 055502 |
| Journal | Journal of Physics B: Atomic, Molecular and Optical Physics |
| Volume | 56 |
| Issue number | 5 |
| DOIs | |
| Publication status | Published - 15 Feb 2023 |
Keywords
- atomic ensemble
- collective scattering
- cumulant expansion
- Faraday interaction
- quantum nondemolition
- Raman lasing
- superradiant laser
ASJC Scopus subject areas
- Atomic and Molecular Physics, and Optics
- Condensed Matter Physics
Projects
- 3 Finished
-
DQ-mat: Collaborative Research Centre 1227/2, sub-project A06: Representation of quantum correlations in complex systems
Hammerer, K. J. (Principal Investigator), Werner, R. (Principal Investigator) & Osborne, T. J. (Principal Investigator)
1 Jul 2020 → 30 Jun 2024
Project: Research
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DQ-mat: Collaborative Research Centre 1227/2: Designed Quantum States of Matter - Generation, Manipulation and Detection for Metrological Applications and Tests of Fundamental Physics
Schmidt, P. O. (Principal Investigator)
1 Jul 2020 → 30 Jun 2024
Project: Research
-
QuantumFrontiers: Cluster of Excellence 2123/1: Light and Matter at the Quantum Frontier
Schmidt, P. O. (Principal Investigator), Ospelkaus-Schwarzer, S. (Principal Investigator), Chichkov, B. (Principal Investigator), Danzmann, K. (Principal Investigator), Ertmer, W. (Principal Investigator), Hammerer, K. J. (Principal Investigator), Haug, R. (Principal Investigator), Heinzel, G. (Principal Investigator), Heurs, M. (Principal Investigator), Klempt, C. (Principal Investigator), Kroker, S. (Principal Investigator), Lisdat, C. (Principal Investigator), Mehlstäubler, T. (Principal Investigator), Müller, J. (Principal Investigator), Ospelkaus, C. (Principal Investigator), Rasel, E. M. (Principal Investigator), Recher, P. (Principal Investigator), Santos, L. S. (Principal Investigator), Schilling, M. (Principal Investigator), Schlickum, U. (Principal Investigator), Schumacher, H. W. (Principal Investigator), Surzhykov, A. (Principal Investigator), Waag, A. (Principal Investigator), Werner, R. (Principal Investigator) & Willke, B. (Principal Investigator)
1 Jan 2019 → 31 Dec 2025
Project: Research
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