Matches in SemOpenAlex for { <https://semopenalex.org/work/W4221013057> ?p ?o ?g. }
- W4221013057 endingPage "455" @default.
- W4221013057 startingPage "455" @default.
- W4221013057 abstract "Resolving features that are smaller than the diffraction limit is an intricate yet fascinating challenge that many scientists are working on. Heretofore, most techniques that can circumvent this resolution limit, such as super-resolution microscopy or electron microscopy, lead to a permanent modification of the sample. Consequently, noninvasive approaches are of special interest. Here we introduce an all-linear far-field measurement and imaging modality for the investigation of ensembles of sub-diffraction-limit sized nanostructures. Our technique is based on laser scanning, polarization resolved Fourier-plane measurements and optimizing a theoretical model of the investigated system to resemble the measurement. As an experimental demonstration, we apply this method to gold nanoparticle clusters and derive their positions and respective sizes with an accuracy down to several nanometers, even if multiple particles are located directly adjacent. Our technique showcases the capabilities of microscopy techniques when combined with careful analysis of light scattered off a specimen." @default.
- W4221013057 created "2022-04-03" @default.
- W4221013057 creator A5016606075 @default.
- W4221013057 creator A5091618271 @default.
- W4221013057 date "2022-04-21" @default.
- W4221013057 modified "2023-10-18" @default.
- W4221013057 title "Sub-diffraction-limit Fourier-plane laser scanning microscopy" @default.
- W4221013057 cites W1672766972 @default.
- W4221013057 cites W16778202 @default.
- W4221013057 cites W1973714168 @default.
- W4221013057 cites W1979232921 @default.
- W4221013057 cites W1988438773 @default.
- W4221013057 cites W1992858116 @default.
- W4221013057 cites W1995929412 @default.
- W4221013057 cites W2021194998 @default.
- W4221013057 cites W2028310736 @default.
- W4221013057 cites W2034758576 @default.
- W4221013057 cites W2040028408 @default.
- W4221013057 cites W2042095553 @default.
- W4221013057 cites W2042629182 @default.
- W4221013057 cites W2043278911 @default.
- W4221013057 cites W2050993261 @default.
- W4221013057 cites W2054455698 @default.
- W4221013057 cites W2055079936 @default.
- W4221013057 cites W2075065714 @default.
- W4221013057 cites W2078998802 @default.
- W4221013057 cites W2101238047 @default.
- W4221013057 cites W2106853492 @default.
- W4221013057 cites W2112840649 @default.
- W4221013057 cites W2114169944 @default.
- W4221013057 cites W2115737236 @default.
- W4221013057 cites W2122322099 @default.
- W4221013057 cites W2131672462 @default.
- W4221013057 cites W2143985046 @default.
- W4221013057 cites W2149241780 @default.
- W4221013057 cites W2169791141 @default.
- W4221013057 cites W2269746046 @default.
- W4221013057 cites W2297404972 @default.
- W4221013057 cites W2554260837 @default.
- W4221013057 cites W2592929672 @default.
- W4221013057 cites W2612390595 @default.
- W4221013057 cites W2901988773 @default.
- W4221013057 cites W2912691252 @default.
- W4221013057 cites W2968908989 @default.
- W4221013057 cites W3014629135 @default.
- W4221013057 cites W3100133227 @default.
- W4221013057 cites W3201280448 @default.
- W4221013057 cites W3209223517 @default.
- W4221013057 cites W4255084180 @default.
- W4221013057 doi "https://doi.org/10.1364/optica.450712" @default.
- W4221013057 hasPublicationYear "2022" @default.
- W4221013057 type Work @default.
- W4221013057 citedByCount "2" @default.
- W4221013057 countsByYear W42210130572023 @default.
- W4221013057 crossrefType "journal-article" @default.
- W4221013057 hasAuthorship W4221013057A5016606075 @default.
- W4221013057 hasAuthorship W4221013057A5091618271 @default.
- W4221013057 hasBestOaLocation W42210130571 @default.
- W4221013057 hasConcept C102519508 @default.
- W4221013057 hasConcept C120665830 @default.
- W4221013057 hasConcept C121332964 @default.
- W4221013057 hasConcept C138268822 @default.
- W4221013057 hasConcept C147080431 @default.
- W4221013057 hasConcept C147789679 @default.
- W4221013057 hasConcept C154945302 @default.
- W4221013057 hasConcept C185592680 @default.
- W4221013057 hasConcept C192562407 @default.
- W4221013057 hasConcept C205049153 @default.
- W4221013057 hasConcept C207114421 @default.
- W4221013057 hasConcept C41008148 @default.
- W4221013057 hasConcept C520434653 @default.
- W4221013057 hasConcept C62520636 @default.
- W4221013057 hasConceptScore W4221013057C102519508 @default.
- W4221013057 hasConceptScore W4221013057C120665830 @default.
- W4221013057 hasConceptScore W4221013057C121332964 @default.
- W4221013057 hasConceptScore W4221013057C138268822 @default.
- W4221013057 hasConceptScore W4221013057C147080431 @default.
- W4221013057 hasConceptScore W4221013057C147789679 @default.
- W4221013057 hasConceptScore W4221013057C154945302 @default.
- W4221013057 hasConceptScore W4221013057C185592680 @default.
- W4221013057 hasConceptScore W4221013057C192562407 @default.
- W4221013057 hasConceptScore W4221013057C205049153 @default.
- W4221013057 hasConceptScore W4221013057C207114421 @default.
- W4221013057 hasConceptScore W4221013057C41008148 @default.
- W4221013057 hasConceptScore W4221013057C520434653 @default.
- W4221013057 hasConceptScore W4221013057C62520636 @default.
- W4221013057 hasFunder F4320320300 @default.
- W4221013057 hasIssue "5" @default.
- W4221013057 hasLocation W42210130571 @default.
- W4221013057 hasOpenAccess W4221013057 @default.
- W4221013057 hasPrimaryLocation W42210130571 @default.
- W4221013057 hasRelatedWork W1970859326 @default.
- W4221013057 hasRelatedWork W1979117245 @default.
- W4221013057 hasRelatedWork W1989814424 @default.
- W4221013057 hasRelatedWork W2019730784 @default.
- W4221013057 hasRelatedWork W2064331538 @default.
- W4221013057 hasRelatedWork W2092799425 @default.
- W4221013057 hasRelatedWork W2114520361 @default.