Matches in SemOpenAlex for { <https://semopenalex.org/work/W2007637701> ?p ?o ?g. }
- W2007637701 abstract "Hollow-core photonic-crystal waveguides filled with cold atoms can support giant optical nonlinearities through nondispersive propagation of light tightly confined in the transverse direction. Here we explore electromagnetically induced transparency is such structures, considering a pair of counterpropagating weak quantum fields in the medium of coherently driven atoms in the ladder configuration. Strong dipole-dipole interactions between optically excited, polarized Rydberg states of the atoms translate into a large dispersive interaction between the two fields. This can be used to attain a spatially homogeneous conditional phase shift of $ensuremath{pi}$ for two single-photon pulses, realizing a deterministic photonic phase gate, or to implement a quantum nondemolition measurement of the photon number in the signal pulse by a coherent probe, thereby achieving a heralded source of single- or few-photon pulses." @default.
- W2007637701 created "2016-06-24" @default.
- W2007637701 creator A5036507673 @default.
- W2007637701 creator A5039402082 @default.
- W2007637701 creator A5042674117 @default.
- W2007637701 creator A5084085784 @default.
- W2007637701 date "2011-03-07" @default.
- W2007637701 modified "2023-10-16" @default.
- W2007637701 title "Strongly interacting photons in hollow-core waveguides" @default.
- W2007637701 cites W1963485659 @default.
- W2007637701 cites W1974475120 @default.
- W2007637701 cites W1989018171 @default.
- W2007637701 cites W1998325718 @default.
- W2007637701 cites W2004084841 @default.
- W2007637701 cites W2014410032 @default.
- W2007637701 cites W2027104002 @default.
- W2007637701 cites W2035516109 @default.
- W2007637701 cites W2039248282 @default.
- W2007637701 cites W2042458092 @default.
- W2007637701 cites W2061980920 @default.
- W2007637701 cites W2068895447 @default.
- W2007637701 cites W2071916206 @default.
- W2007637701 cites W2075467403 @default.
- W2007637701 cites W2088647144 @default.
- W2007637701 cites W2133813292 @default.
- W2007637701 cites W2134514394 @default.
- W2007637701 cites W2136171089 @default.
- W2007637701 cites W2144015250 @default.
- W2007637701 cites W2158000927 @default.
- W2007637701 cites W2170163127 @default.
- W2007637701 cites W2964141971 @default.
- W2007637701 cites W4235477938 @default.
- W2007637701 cites W587657103 @default.
- W2007637701 doi "https://doi.org/10.1103/physreva.83.033806" @default.
- W2007637701 hasPublicationYear "2011" @default.
- W2007637701 type Work @default.
- W2007637701 sameAs 2007637701 @default.
- W2007637701 citedByCount "86" @default.
- W2007637701 countsByYear W20076377012012 @default.
- W2007637701 countsByYear W20076377012013 @default.
- W2007637701 countsByYear W20076377012014 @default.
- W2007637701 countsByYear W20076377012015 @default.
- W2007637701 countsByYear W20076377012016 @default.
- W2007637701 countsByYear W20076377012017 @default.
- W2007637701 countsByYear W20076377012018 @default.
- W2007637701 countsByYear W20076377012019 @default.
- W2007637701 countsByYear W20076377012020 @default.
- W2007637701 countsByYear W20076377012021 @default.
- W2007637701 countsByYear W20076377012022 @default.
- W2007637701 countsByYear W20076377012023 @default.
- W2007637701 crossrefType "journal-article" @default.
- W2007637701 hasAuthorship W2007637701A5036507673 @default.
- W2007637701 hasAuthorship W2007637701A5039402082 @default.
- W2007637701 hasAuthorship W2007637701A5042674117 @default.
- W2007637701 hasAuthorship W2007637701A5084085784 @default.
- W2007637701 hasBestOaLocation W20076377012 @default.
- W2007637701 hasConcept C120665830 @default.
- W2007637701 hasConcept C121332964 @default.
- W2007637701 hasConcept C131935069 @default.
- W2007637701 hasConcept C145148216 @default.
- W2007637701 hasConcept C159317903 @default.
- W2007637701 hasConcept C173523689 @default.
- W2007637701 hasConcept C181500209 @default.
- W2007637701 hasConcept C184779094 @default.
- W2007637701 hasConcept C198291218 @default.
- W2007637701 hasConcept C20788544 @default.
- W2007637701 hasConcept C2777288060 @default.
- W2007637701 hasConcept C62520636 @default.
- W2007637701 hasConcept C68717125 @default.
- W2007637701 hasConcept C70747811 @default.
- W2007637701 hasConcept C84114770 @default.
- W2007637701 hasConceptScore W2007637701C120665830 @default.
- W2007637701 hasConceptScore W2007637701C121332964 @default.
- W2007637701 hasConceptScore W2007637701C131935069 @default.
- W2007637701 hasConceptScore W2007637701C145148216 @default.
- W2007637701 hasConceptScore W2007637701C159317903 @default.
- W2007637701 hasConceptScore W2007637701C173523689 @default.
- W2007637701 hasConceptScore W2007637701C181500209 @default.
- W2007637701 hasConceptScore W2007637701C184779094 @default.
- W2007637701 hasConceptScore W2007637701C198291218 @default.
- W2007637701 hasConceptScore W2007637701C20788544 @default.
- W2007637701 hasConceptScore W2007637701C2777288060 @default.
- W2007637701 hasConceptScore W2007637701C62520636 @default.
- W2007637701 hasConceptScore W2007637701C68717125 @default.
- W2007637701 hasConceptScore W2007637701C70747811 @default.
- W2007637701 hasConceptScore W2007637701C84114770 @default.
- W2007637701 hasIssue "3" @default.
- W2007637701 hasLocation W20076377011 @default.
- W2007637701 hasLocation W20076377012 @default.
- W2007637701 hasOpenAccess W2007637701 @default.
- W2007637701 hasPrimaryLocation W20076377011 @default.
- W2007637701 hasRelatedWork W1976243032 @default.
- W2007637701 hasRelatedWork W2002801428 @default.
- W2007637701 hasRelatedWork W2007154395 @default.
- W2007637701 hasRelatedWork W2064606537 @default.
- W2007637701 hasRelatedWork W2091461631 @default.
- W2007637701 hasRelatedWork W2166021408 @default.
- W2007637701 hasRelatedWork W2747485665 @default.
- W2007637701 hasRelatedWork W3089735192 @default.
- W2007637701 hasRelatedWork W3098592414 @default.