Matches in SemOpenAlex for { <https://semopenalex.org/work/W3060724476> ?p ?o ?g. }
- W3060724476 endingPage "2488" @default.
- W3060724476 startingPage "2482" @default.
- W3060724476 abstract "In addition to their strong nonlinear optical response, transition metal dichalcogenides (TMDCs) possess a high refractive index in the visible and infrared regime. Therefore, by patterning those TMDCs into dielectric nanoresonators, one can generate highly confined electromagnetic modes. Controlled fabrication of TMDC nanoresonators does not only enhance the material’s intrinsic nonlinear response, but also allows for spatially shaping the emission via nanoresonator arrays. Here we fabricate patterned WS2 disks that support a high internal resonant electric field and show strong enhancement of second harmonic (SH) generation in the visible regime. In addition, we assemble the WS2 disks in arrays to spatially direct the coherent SH emission, in analogy to phased array antennas. Finally, we investigate and discuss drastic differences in the areal emission origin and intensity of the measured SH signals, which we find to depend on material variations of the used bulk WS2." @default.
- W3060724476 created "2020-08-24" @default.
- W3060724476 creator A5016100217 @default.
- W3060724476 creator A5016196263 @default.
- W3060724476 creator A5027722075 @default.
- W3060724476 creator A5037473821 @default.
- W3060724476 creator A5052462892 @default.
- W3060724476 creator A5075078607 @default.
- W3060724476 date "2020-08-19" @default.
- W3060724476 modified "2023-09-30" @default.
- W3060724476 title "Transition Metal Dichalcogenide Resonators for Second Harmonic Signal Enhancement" @default.
- W3060724476 cites W1188636983 @default.
- W3060724476 cites W1817141023 @default.
- W3060724476 cites W1971534155 @default.
- W3060724476 cites W2027340654 @default.
- W3060724476 cites W2032786279 @default.
- W3060724476 cites W2051200985 @default.
- W3060724476 cites W2085681351 @default.
- W3060724476 cites W2101496190 @default.
- W3060724476 cites W2142381883 @default.
- W3060724476 cites W2275573645 @default.
- W3060724476 cites W2319497083 @default.
- W3060724476 cites W2460417061 @default.
- W3060724476 cites W2474553580 @default.
- W3060724476 cites W2497052677 @default.
- W3060724476 cites W2515391095 @default.
- W3060724476 cites W2516305675 @default.
- W3060724476 cites W2552835525 @default.
- W3060724476 cites W2565574352 @default.
- W3060724476 cites W2569823976 @default.
- W3060724476 cites W2765571929 @default.
- W3060724476 cites W2766010191 @default.
- W3060724476 cites W2767111486 @default.
- W3060724476 cites W2769561701 @default.
- W3060724476 cites W2782332945 @default.
- W3060724476 cites W2784402314 @default.
- W3060724476 cites W2803630457 @default.
- W3060724476 cites W2806336438 @default.
- W3060724476 cites W2902836776 @default.
- W3060724476 cites W2904514461 @default.
- W3060724476 cites W2914328039 @default.
- W3060724476 cites W2930312793 @default.
- W3060724476 cites W2946857538 @default.
- W3060724476 cites W2962747858 @default.
- W3060724476 cites W2969519052 @default.
- W3060724476 cites W2999950615 @default.
- W3060724476 cites W3100712890 @default.
- W3060724476 cites W3102018527 @default.
- W3060724476 cites W3102766221 @default.
- W3060724476 cites W3105153581 @default.
- W3060724476 cites W3105929801 @default.
- W3060724476 cites W4232358013 @default.
- W3060724476 cites W4255084180 @default.
- W3060724476 doi "https://doi.org/10.1021/acsphotonics.0c00751" @default.
- W3060724476 hasPublicationYear "2020" @default.
- W3060724476 type Work @default.
- W3060724476 sameAs 3060724476 @default.
- W3060724476 citedByCount "44" @default.
- W3060724476 countsByYear W30607244762021 @default.
- W3060724476 countsByYear W30607244762022 @default.
- W3060724476 countsByYear W30607244762023 @default.
- W3060724476 crossrefType "journal-article" @default.
- W3060724476 hasAuthorship W3060724476A5016100217 @default.
- W3060724476 hasAuthorship W3060724476A5016196263 @default.
- W3060724476 hasAuthorship W3060724476A5027722075 @default.
- W3060724476 hasAuthorship W3060724476A5037473821 @default.
- W3060724476 hasAuthorship W3060724476A5052462892 @default.
- W3060724476 hasAuthorship W3060724476A5075078607 @default.
- W3060724476 hasBestOaLocation W30607244761 @default.
- W3060724476 hasConcept C106773901 @default.
- W3060724476 hasConcept C120665830 @default.
- W3060724476 hasConcept C121332964 @default.
- W3060724476 hasConcept C133386390 @default.
- W3060724476 hasConcept C136525101 @default.
- W3060724476 hasConcept C142724271 @default.
- W3060724476 hasConcept C161790260 @default.
- W3060724476 hasConcept C185592680 @default.
- W3060724476 hasConcept C192562407 @default.
- W3060724476 hasConcept C204787440 @default.
- W3060724476 hasConcept C30713254 @default.
- W3060724476 hasConcept C42067758 @default.
- W3060724476 hasConcept C49040817 @default.
- W3060724476 hasConcept C520434653 @default.
- W3060724476 hasConcept C55493867 @default.
- W3060724476 hasConcept C60799052 @default.
- W3060724476 hasConcept C62520636 @default.
- W3060724476 hasConcept C71924100 @default.
- W3060724476 hasConcept C78854221 @default.
- W3060724476 hasConcept C97126364 @default.
- W3060724476 hasConceptScore W3060724476C106773901 @default.
- W3060724476 hasConceptScore W3060724476C120665830 @default.
- W3060724476 hasConceptScore W3060724476C121332964 @default.
- W3060724476 hasConceptScore W3060724476C133386390 @default.
- W3060724476 hasConceptScore W3060724476C136525101 @default.
- W3060724476 hasConceptScore W3060724476C142724271 @default.
- W3060724476 hasConceptScore W3060724476C161790260 @default.
- W3060724476 hasConceptScore W3060724476C185592680 @default.
- W3060724476 hasConceptScore W3060724476C192562407 @default.