Matches in SemOpenAlex for { <https://semopenalex.org/work/W4206702502> ?p ?o ?g. }
- W4206702502 endingPage "694" @default.
- W4206702502 startingPage "688" @default.
- W4206702502 abstract "On-chip nanoscale optical platforms capable of efficient second harmonic generation (SHG) are highly desired for optical sensing, subwavelength coherent sources, and quantum photonic devices. Here, we develop a remotely excited dual cavity resonance scheme to achieve significantly enhanced SHG in a CdSe nanobelt on Au film hybrid waveguide system. The SHG emission with superior efficiency originates from counter-propagating plasmonic modes interference in a horizontal Fabry-Pérot (FP) cavity enabled by remote excitation of propagating surface plasmons, which is further enhanced through a vertical FP cavity. With this effective cooperation of hybrid plasmon modes and FP cavity modes, 2 orders of magnitude enhancement of the conversion efficiency (3.5 × 10-4 W-1) is achieved compared to the off-resonance case. Our design provides new insight into the development of a multifunctional hybrid plasmonic device toward on-chip nonlinear nanophotonic applications." @default.
- W4206702502 created "2022-01-26" @default.
- W4206702502 creator A5017489902 @default.
- W4206702502 creator A5047336918 @default.
- W4206702502 creator A5050945284 @default.
- W4206702502 creator A5063200475 @default.
- W4206702502 creator A5067357180 @default.
- W4206702502 creator A5069034824 @default.
- W4206702502 creator A5078266198 @default.
- W4206702502 date "2022-01-13" @default.
- W4206702502 modified "2023-10-15" @default.
- W4206702502 title "Remote Dual-Cavity Enhanced Second Harmonic Generation in a Hybrid Plasmonic Waveguide" @default.
- W4206702502 cites W1761662025 @default.
- W4206702502 cites W1833966260 @default.
- W4206702502 cites W1967055413 @default.
- W4206702502 cites W1968617955 @default.
- W4206702502 cites W1969363113 @default.
- W4206702502 cites W1976773021 @default.
- W4206702502 cites W1977786555 @default.
- W4206702502 cites W1978908111 @default.
- W4206702502 cites W1991199542 @default.
- W4206702502 cites W2011010463 @default.
- W4206702502 cites W2015476355 @default.
- W4206702502 cites W2025864484 @default.
- W4206702502 cites W2031948725 @default.
- W4206702502 cites W2032503040 @default.
- W4206702502 cites W2042998200 @default.
- W4206702502 cites W2045391383 @default.
- W4206702502 cites W2045831370 @default.
- W4206702502 cites W2057266822 @default.
- W4206702502 cites W2063468757 @default.
- W4206702502 cites W2063863236 @default.
- W4206702502 cites W2078171652 @default.
- W4206702502 cites W2080208267 @default.
- W4206702502 cites W2121939855 @default.
- W4206702502 cites W2123627303 @default.
- W4206702502 cites W2128950819 @default.
- W4206702502 cites W2129553451 @default.
- W4206702502 cites W2131666314 @default.
- W4206702502 cites W2133068879 @default.
- W4206702502 cites W2136079458 @default.
- W4206702502 cites W2143470438 @default.
- W4206702502 cites W2146910168 @default.
- W4206702502 cites W2151706197 @default.
- W4206702502 cites W2282043915 @default.
- W4206702502 cites W2294494251 @default.
- W4206702502 cites W2312851544 @default.
- W4206702502 cites W2316587262 @default.
- W4206702502 cites W2322765534 @default.
- W4206702502 cites W2328152538 @default.
- W4206702502 cites W2339965549 @default.
- W4206702502 cites W2610492224 @default.
- W4206702502 cites W2615674821 @default.
- W4206702502 cites W2768809480 @default.
- W4206702502 cites W2785956082 @default.
- W4206702502 cites W2944127768 @default.
- W4206702502 cites W2946367511 @default.
- W4206702502 cites W2953432502 @default.
- W4206702502 cites W2958155519 @default.
- W4206702502 cites W2990554986 @default.
- W4206702502 cites W3093650041 @default.
- W4206702502 cites W3155457416 @default.
- W4206702502 cites W3204147942 @default.
- W4206702502 cites W3216666478 @default.
- W4206702502 cites W4211085660 @default.
- W4206702502 doi "https://doi.org/10.1021/acs.nanolett.1c03824" @default.
- W4206702502 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35025516" @default.
- W4206702502 hasPublicationYear "2022" @default.
- W4206702502 type Work @default.
- W4206702502 citedByCount "8" @default.
- W4206702502 countsByYear W42067025022022 @default.
- W4206702502 countsByYear W42067025022023 @default.
- W4206702502 crossrefType "journal-article" @default.
- W4206702502 hasAuthorship W4206702502A5017489902 @default.
- W4206702502 hasAuthorship W4206702502A5047336918 @default.
- W4206702502 hasAuthorship W4206702502A5050945284 @default.
- W4206702502 hasAuthorship W4206702502A5063200475 @default.
- W4206702502 hasAuthorship W4206702502A5067357180 @default.
- W4206702502 hasAuthorship W4206702502A5069034824 @default.
- W4206702502 hasAuthorship W4206702502A5078266198 @default.
- W4206702502 hasConcept C106847996 @default.
- W4206702502 hasConcept C109214941 @default.
- W4206702502 hasConcept C110879396 @default.
- W4206702502 hasConcept C120665830 @default.
- W4206702502 hasConcept C121332964 @default.
- W4206702502 hasConcept C127934551 @default.
- W4206702502 hasConcept C139210041 @default.
- W4206702502 hasConcept C155672457 @default.
- W4206702502 hasConcept C171250308 @default.
- W4206702502 hasConcept C192562407 @default.
- W4206702502 hasConcept C200687136 @default.
- W4206702502 hasConcept C20788544 @default.
- W4206702502 hasConcept C27289702 @default.
- W4206702502 hasConcept C30713254 @default.
- W4206702502 hasConcept C49040817 @default.
- W4206702502 hasConcept C520434653 @default.
- W4206702502 hasConcept C62520636 @default.
- W4206702502 hasConcept C97126364 @default.