Matches in SemOpenAlex for { <https://semopenalex.org/work/W2475285068> ?p ?o ?g. }
- W2475285068 abstract "Nonradiative resonance energy transfer (RET) provides the ability to transfer excitation energy between contiguous nanowires (NWs) with high efficiency under certain conditions. Nevertheless, the well-established Forster formalism commonly used to represent RET was developed for energy transfer primarily between molecular blocks (i.e., from one molecule, or part of a molecule, to another). Although deviations from Forster theory for functional blocks such as NWs have been studied previously, the role of the relative distance, the orientation of transition dipole moment pairs, and the passively interacting matter on electronic energy transfer are to a large extent unknown. Thus, a comprehensive theory that models RET in NWs is required. In this context, analytical insights to give a deeper and more intuitive understanding of the distance and orientation dependence of RET in NWs is presented within the framework of quantum electrodynamics. Additionally, the influence of an included intermediary on the rate of excitation energy transfer is illustrated, embracing indirect energy transfer rate and quantum interference. The results deliver equations that afford new intuitions into the behavior of virtual photons. In particular, results indicate that RET efficiency in a NW system can be explicitly expedited or inhibited by a neighboring mediator, depending on the relative spacing and orientation of NWs." @default.
- W2475285068 created "2016-07-22" @default.
- W2475285068 creator A5062434121 @default.
- W2475285068 creator A5081447295 @default.
- W2475285068 creator A5088983596 @default.
- W2475285068 date "2016-02-25" @default.
- W2475285068 modified "2023-09-23" @default.
- W2475285068 title "Quantum electrodynamics of resonance energy transfer in nanowire systems" @default.
- W2475285068 cites W1002587171 @default.
- W2475285068 cites W1487046968 @default.
- W2475285068 cites W1586668292 @default.
- W2475285068 cites W1806378040 @default.
- W2475285068 cites W1914285554 @default.
- W2475285068 cites W1927795053 @default.
- W2475285068 cites W1936904286 @default.
- W2475285068 cites W1965293504 @default.
- W2475285068 cites W1970587745 @default.
- W2475285068 cites W1976364416 @default.
- W2475285068 cites W1976762261 @default.
- W2475285068 cites W1977974544 @default.
- W2475285068 cites W1981527291 @default.
- W2475285068 cites W1991524670 @default.
- W2475285068 cites W1993904674 @default.
- W2475285068 cites W1995886084 @default.
- W2475285068 cites W2019988115 @default.
- W2475285068 cites W2021151856 @default.
- W2475285068 cites W2033449094 @default.
- W2475285068 cites W2036325947 @default.
- W2475285068 cites W2042484396 @default.
- W2475285068 cites W2047968614 @default.
- W2475285068 cites W2049862375 @default.
- W2475285068 cites W2057460755 @default.
- W2475285068 cites W2059726409 @default.
- W2475285068 cites W2063675083 @default.
- W2475285068 cites W2064178177 @default.
- W2475285068 cites W2073546813 @default.
- W2475285068 cites W2074759294 @default.
- W2475285068 cites W2074949050 @default.
- W2475285068 cites W2080407968 @default.
- W2475285068 cites W2082949748 @default.
- W2475285068 cites W2084304664 @default.
- W2475285068 cites W2085943055 @default.
- W2475285068 cites W2090854258 @default.
- W2475285068 cites W2093100815 @default.
- W2475285068 cites W2093421311 @default.
- W2475285068 cites W2093579847 @default.
- W2475285068 cites W2094517427 @default.
- W2475285068 cites W2159214977 @default.
- W2475285068 cites W2159307343 @default.
- W2475285068 cites W2264353243 @default.
- W2475285068 cites W2324528831 @default.
- W2475285068 cites W2340870622 @default.
- W2475285068 cites W2999192065 @default.
- W2475285068 doi "https://doi.org/10.1103/physrevb.93.075151" @default.
- W2475285068 hasPublicationYear "2016" @default.
- W2475285068 type Work @default.
- W2475285068 sameAs 2475285068 @default.
- W2475285068 citedByCount "22" @default.
- W2475285068 countsByYear W24752850682016 @default.
- W2475285068 countsByYear W24752850682017 @default.
- W2475285068 countsByYear W24752850682018 @default.
- W2475285068 countsByYear W24752850682019 @default.
- W2475285068 countsByYear W24752850682020 @default.
- W2475285068 countsByYear W24752850682021 @default.
- W2475285068 countsByYear W24752850682023 @default.
- W2475285068 crossrefType "journal-article" @default.
- W2475285068 hasAuthorship W2475285068A5062434121 @default.
- W2475285068 hasAuthorship W2475285068A5081447295 @default.
- W2475285068 hasAuthorship W2475285068A5088983596 @default.
- W2475285068 hasBestOaLocation W24752850682 @default.
- W2475285068 hasConcept C106447425 @default.
- W2475285068 hasConcept C121332964 @default.
- W2475285068 hasConcept C139210041 @default.
- W2475285068 hasConcept C151730666 @default.
- W2475285068 hasConcept C159317903 @default.
- W2475285068 hasConcept C16345878 @default.
- W2475285068 hasConcept C173523689 @default.
- W2475285068 hasConcept C178803272 @default.
- W2475285068 hasConcept C184779094 @default.
- W2475285068 hasConcept C2524010 @default.
- W2475285068 hasConcept C2779343474 @default.
- W2475285068 hasConcept C33923547 @default.
- W2475285068 hasConcept C62520636 @default.
- W2475285068 hasConcept C74214498 @default.
- W2475285068 hasConcept C83581075 @default.
- W2475285068 hasConcept C84114770 @default.
- W2475285068 hasConcept C86803240 @default.
- W2475285068 hasConceptScore W2475285068C106447425 @default.
- W2475285068 hasConceptScore W2475285068C121332964 @default.
- W2475285068 hasConceptScore W2475285068C139210041 @default.
- W2475285068 hasConceptScore W2475285068C151730666 @default.
- W2475285068 hasConceptScore W2475285068C159317903 @default.
- W2475285068 hasConceptScore W2475285068C16345878 @default.
- W2475285068 hasConceptScore W2475285068C173523689 @default.
- W2475285068 hasConceptScore W2475285068C178803272 @default.
- W2475285068 hasConceptScore W2475285068C184779094 @default.
- W2475285068 hasConceptScore W2475285068C2524010 @default.
- W2475285068 hasConceptScore W2475285068C2779343474 @default.
- W2475285068 hasConceptScore W2475285068C33923547 @default.
- W2475285068 hasConceptScore W2475285068C62520636 @default.