Matches in SemOpenAlex for { <https://semopenalex.org/work/W2302326306> ?p ?o ?g. }
- W2302326306 endingPage "6688" @default.
- W2302326306 startingPage "6683" @default.
- W2302326306 abstract "Quantum tunneling in plasmonic nanostructures has presented an interesting aspect of incorporating quantum mechanics into classical optics. However, the study has been limited to the subnanometer gap regime. Here, we newly extend quantum plasmonics to gap widths well over 1 nm by taking advantage of the low-frequency terahertz regime. Enhanced electric fields of up to 5 V/nm induce tunneling of electrons in different arrays of ring-shaped nanoslot antennas of gap widths from 1.5 to 10 nm, which lead to a significant nonlinear transmission decrease. These observations are consistent with theoretical calculations considering terahertz-funneling-induced electron tunneling across the gap." @default.
- W2302326306 created "2016-06-24" @default.
- W2302326306 creator A5001130772 @default.
- W2302326306 creator A5013519625 @default.
- W2302326306 creator A5023084454 @default.
- W2302326306 creator A5044840923 @default.
- W2302326306 creator A5047100684 @default.
- W2302326306 creator A5062680727 @default.
- W2302326306 creator A5063292557 @default.
- W2302326306 creator A5066503635 @default.
- W2302326306 creator A5072036890 @default.
- W2302326306 date "2015-09-22" @default.
- W2302326306 modified "2023-10-17" @default.
- W2302326306 title "Terahertz Quantum Plasmonics of Nanoslot Antennas in Nonlinear Regime" @default.
- W2302326306 cites W1544231337 @default.
- W2302326306 cites W1968599358 @default.
- W2302326306 cites W1974935802 @default.
- W2302326306 cites W1976392610 @default.
- W2302326306 cites W1983160676 @default.
- W2302326306 cites W1990188566 @default.
- W2302326306 cites W1996381343 @default.
- W2302326306 cites W1997415897 @default.
- W2302326306 cites W2003082175 @default.
- W2302326306 cites W2007434830 @default.
- W2302326306 cites W2010829117 @default.
- W2302326306 cites W2012863944 @default.
- W2302326306 cites W2018453238 @default.
- W2302326306 cites W2021449011 @default.
- W2302326306 cites W2023543129 @default.
- W2302326306 cites W2034863174 @default.
- W2302326306 cites W2035088688 @default.
- W2302326306 cites W2035188058 @default.
- W2302326306 cites W2043852629 @default.
- W2302326306 cites W2053662013 @default.
- W2302326306 cites W2062175721 @default.
- W2302326306 cites W2069015156 @default.
- W2302326306 cites W2075543070 @default.
- W2302326306 cites W2080659521 @default.
- W2302326306 cites W2080976536 @default.
- W2302326306 cites W2081116002 @default.
- W2302326306 cites W2087531733 @default.
- W2302326306 cites W2097149282 @default.
- W2302326306 cites W2114815850 @default.
- W2302326306 cites W2133919522 @default.
- W2302326306 cites W2141679678 @default.
- W2302326306 cites W2145726158 @default.
- W2302326306 cites W2148774581 @default.
- W2302326306 cites W2159981054 @default.
- W2302326306 cites W2232929630 @default.
- W2302326306 cites W2314507373 @default.
- W2302326306 cites W2333356221 @default.
- W2302326306 cites W2417317646 @default.
- W2302326306 cites W3037558250 @default.
- W2302326306 doi "https://doi.org/10.1021/acs.nanolett.5b02505" @default.
- W2302326306 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/26372787" @default.
- W2302326306 hasPublicationYear "2015" @default.
- W2302326306 type Work @default.
- W2302326306 sameAs 2302326306 @default.
- W2302326306 citedByCount "59" @default.
- W2302326306 countsByYear W23023263062015 @default.
- W2302326306 countsByYear W23023263062016 @default.
- W2302326306 countsByYear W23023263062017 @default.
- W2302326306 countsByYear W23023263062018 @default.
- W2302326306 countsByYear W23023263062019 @default.
- W2302326306 countsByYear W23023263062020 @default.
- W2302326306 countsByYear W23023263062021 @default.
- W2302326306 countsByYear W23023263062022 @default.
- W2302326306 countsByYear W23023263062023 @default.
- W2302326306 crossrefType "journal-article" @default.
- W2302326306 hasAuthorship W2302326306A5001130772 @default.
- W2302326306 hasAuthorship W2302326306A5013519625 @default.
- W2302326306 hasAuthorship W2302326306A5023084454 @default.
- W2302326306 hasAuthorship W2302326306A5044840923 @default.
- W2302326306 hasAuthorship W2302326306A5047100684 @default.
- W2302326306 hasAuthorship W2302326306A5062680727 @default.
- W2302326306 hasAuthorship W2302326306A5063292557 @default.
- W2302326306 hasAuthorship W2302326306A5066503635 @default.
- W2302326306 hasAuthorship W2302326306A5072036890 @default.
- W2302326306 hasBestOaLocation W23023263061 @default.
- W2302326306 hasConcept C107816215 @default.
- W2302326306 hasConcept C110367647 @default.
- W2302326306 hasConcept C110879396 @default.
- W2302326306 hasConcept C120398109 @default.
- W2302326306 hasConcept C121332964 @default.
- W2302326306 hasConcept C147120987 @default.
- W2302326306 hasConcept C181966813 @default.
- W2302326306 hasConcept C192562407 @default.
- W2302326306 hasConcept C26873012 @default.
- W2302326306 hasConcept C49040817 @default.
- W2302326306 hasConcept C60799052 @default.
- W2302326306 hasConcept C62520636 @default.
- W2302326306 hasConcept C84114770 @default.
- W2302326306 hasConceptScore W2302326306C107816215 @default.
- W2302326306 hasConceptScore W2302326306C110367647 @default.
- W2302326306 hasConceptScore W2302326306C110879396 @default.
- W2302326306 hasConceptScore W2302326306C120398109 @default.
- W2302326306 hasConceptScore W2302326306C121332964 @default.
- W2302326306 hasConceptScore W2302326306C147120987 @default.