Coherence loss and revivals in atomic interferometry: a quantum-recoil analysis
Abstract
The coherence effects induced by external photons coupled to matter waves inside a Mach-Zehnder three-grating interferometer are analyzed. Alternatively to atom-photon entanglement scenarios, the model considered here only relies on the atomic wavefunction and the momentum shift induced in it by the photon scattering events. A functional dependence is thus found between the observables, namely the fringe visibility and the phase shift, and the transversal momentum transfer distribution. Good quantitative agreement is found when comparing the results obtained from our model with the experimental data.
Source:
Journal of Physics A-Mathematical and Theoretical, 2012, 45, 16Funding / projects:
- Physics of Ordered Nanostructures and New Materials in Photonics (RS-171005)
- A new approach to foundational problems of quantum mechanics related to applications in quantum technologies and interpretations of signals of various origins (RS-171028)
- Fabrication and characterization of nano-photonic functional structrues in biomedicine and informatics (RS-45016)
- Ministerio de Economia y Competitividad (Spain) FIS2010-22082
- Ministerio de Economia y Competitividad (Spain) FIS2011-29596-C02-01
- Ramon y Cajal Research Fellowship RYC-2010-05768
DOI: 10.1088/1751-8113/45/16/165303
ISSN: 1751-8113
WoS: 000302794200013
Scopus: 2-s2.0-84859514053
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Institution/Community
GraFarTY - JOUR AU - Davidović, Milena AU - Sanz, Angel S. AU - Božić, Mirjana AU - Arsenović, Dušan PY - 2012 UR - https://grafar.grf.bg.ac.rs/handle/123456789/469 AB - The coherence effects induced by external photons coupled to matter waves inside a Mach-Zehnder three-grating interferometer are analyzed. Alternatively to atom-photon entanglement scenarios, the model considered here only relies on the atomic wavefunction and the momentum shift induced in it by the photon scattering events. A functional dependence is thus found between the observables, namely the fringe visibility and the phase shift, and the transversal momentum transfer distribution. Good quantitative agreement is found when comparing the results obtained from our model with the experimental data. T2 - Journal of Physics A-Mathematical and Theoretical T1 - Coherence loss and revivals in atomic interferometry: a quantum-recoil analysis IS - 16 VL - 45 DO - 10.1088/1751-8113/45/16/165303 ER -
@article{ author = "Davidović, Milena and Sanz, Angel S. and Božić, Mirjana and Arsenović, Dušan", year = "2012", abstract = "The coherence effects induced by external photons coupled to matter waves inside a Mach-Zehnder three-grating interferometer are analyzed. Alternatively to atom-photon entanglement scenarios, the model considered here only relies on the atomic wavefunction and the momentum shift induced in it by the photon scattering events. A functional dependence is thus found between the observables, namely the fringe visibility and the phase shift, and the transversal momentum transfer distribution. Good quantitative agreement is found when comparing the results obtained from our model with the experimental data.", journal = "Journal of Physics A-Mathematical and Theoretical", title = "Coherence loss and revivals in atomic interferometry: a quantum-recoil analysis", number = "16", volume = "45", doi = "10.1088/1751-8113/45/16/165303" }
Davidović, M., Sanz, A. S., Božić, M.,& Arsenović, D.. (2012). Coherence loss and revivals in atomic interferometry: a quantum-recoil analysis. in Journal of Physics A-Mathematical and Theoretical, 45(16). https://doi.org/10.1088/1751-8113/45/16/165303
Davidović M, Sanz AS, Božić M, Arsenović D. Coherence loss and revivals in atomic interferometry: a quantum-recoil analysis. in Journal of Physics A-Mathematical and Theoretical. 2012;45(16). doi:10.1088/1751-8113/45/16/165303 .
Davidović, Milena, Sanz, Angel S., Božić, Mirjana, Arsenović, Dušan, "Coherence loss and revivals in atomic interferometry: a quantum-recoil analysis" in Journal of Physics A-Mathematical and Theoretical, 45, no. 16 (2012), https://doi.org/10.1088/1751-8113/45/16/165303 . .