Enhancement of Optical Nonlinearity in the Triangular Gold Nanoplates on Indium Tin Oxide
The nonlinear optical materials with small footprint, low operating energy, ultrafast and large nonlinear optical response are highly required for the signal processing. Here, we investigated the broadband optical nonlinear response of the triangular gold nanoplates on indium tin oxide (ITO) coated...
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Veröffentlicht in: | IEEE photonics journal 2021-06, Vol.13 (3), p.1-8 |
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description | The nonlinear optical materials with small footprint, low operating energy, ultrafast and large nonlinear optical response are highly required for the signal processing. Here, we investigated the broadband optical nonlinear response of the triangular gold nanoplates on indium tin oxide (ITO) coated glass, and obtained a large optical nonlinear enhancement at its localized surface plasmon resonance (LSPR) region at the wavelength of 780 nm, far from the ENZ (epsilon-near-zero) region of ITO. The measured nonlinear refractive index and nonlinear absorption coefficient can reach up to 8.39×10 -15 m 2 /W and 5.81×10 -8 m/W, respectively. The experimental results highlight the noble metals' potential for nonlinear optics and nanophotonics. |
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Here, we investigated the broadband optical nonlinear response of the triangular gold nanoplates on indium tin oxide (ITO) coated glass, and obtained a large optical nonlinear enhancement at its localized surface plasmon resonance (LSPR) region at the wavelength of 780 nm, far from the ENZ (epsilon-near-zero) region of ITO. The measured nonlinear refractive index and nonlinear absorption coefficient can reach up to 8.39×10 -15 m 2 /W and 5.81×10 -8 m/W, respectively. 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Here, we investigated the broadband optical nonlinear response of the triangular gold nanoplates on indium tin oxide (ITO) coated glass, and obtained a large optical nonlinear enhancement at its localized surface plasmon resonance (LSPR) region at the wavelength of 780 nm, far from the ENZ (epsilon-near-zero) region of ITO. The measured nonlinear refractive index and nonlinear absorption coefficient can reach up to 8.39×10 -15 m 2 /W and 5.81×10 -8 m/W, respectively. The experimental results highlight the noble metals' potential for nonlinear optics and nanophotonics.</description><subject>Absorptivity</subject><subject>Broadband</subject><subject>Glass</subject><subject>Gold</subject><subject>Indium tin oxide</subject><subject>Indium tin oxides</subject><subject>Kerr effect</subject><subject>Light interaction</subject><subject>Noble metals</subject><subject>nonlinear effects</subject><subject>Nonlinear optics</subject><subject>Nonlinear response</subject><subject>Nonlinearity</subject><subject>Optical films</subject><subject>Optical imaging</subject><subject>Optical materials</subject><subject>optical properties of photonic materials</subject><subject>Optics</subject><subject>plasmonics</subject><subject>Refractivity</subject><subject>Signal processing</subject><subject>ultrafast nonlinear process</subject><subject>Ultrafast optics</subject><issn>1943-0655</issn><issn>1943-0655</issn><issn>1943-0647</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2021</creationdate><recordtype>article</recordtype><sourceid>ESBDL</sourceid><sourceid>RIE</sourceid><sourceid>DOA</sourceid><recordid>eNpNkU1Lw0AQhoMo-PkH9LLguXX2K8keRapWxHrIxdMyyU50S7pbNynovze1RTzNMLzPOzO8WXbJYco5mJun18dFNRUg-FRCqcuCH2Qn3Cg5gVzrw3_9cXba90uA3HBtTrK3WfjA0NCKwsBiyxbrwTfYsZcYOh8Ikx--mQ9s-CBWJY_hfdNhYg-xc-wFQ1x3OFDPYmDz4PxmxapRvPjyjs6zoxa7ni729Syr7mfV3ePkefEwv7t9njQK9DBBgVjypsBaKeSy4FKaUoJShAUK1TYCoXTEuc5bAaA0gKHCaSdVK_JanmXzna2LuLTr5FeYvm1Eb38HMb1bTONPHdlGc6w1SKxloRCdaYzJa5PLmmpXq63X9c5rneLnhvrBLuMmhfF6K7QSI8pzGFVip2pS7PtE7d9WDnabhv1Nw27TsPs0RuhqB3ki-gOMUqrkSv4AsxuFfQ</recordid><startdate>20210601</startdate><enddate>20210601</enddate><creator>Huang, Jing</creator><creator>Li, Jie</creator><creator>Liu, Dongyang</creator><creator>Miao, Lili</creator><creator>Zhao, Chujun</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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Here, we investigated the broadband optical nonlinear response of the triangular gold nanoplates on indium tin oxide (ITO) coated glass, and obtained a large optical nonlinear enhancement at its localized surface plasmon resonance (LSPR) region at the wavelength of 780 nm, far from the ENZ (epsilon-near-zero) region of ITO. The measured nonlinear refractive index and nonlinear absorption coefficient can reach up to 8.39×10 -15 m 2 /W and 5.81×10 -8 m/W, respectively. The experimental results highlight the noble metals' potential for nonlinear optics and nanophotonics.</abstract><cop>Piscataway</cop><pub>IEEE</pub><doi>10.1109/JPHOT.2021.3085871</doi><tpages>8</tpages><orcidid>https://orcid.org/0000-0001-7116-5847</orcidid><orcidid>https://orcid.org/0000-0002-7924-9524</orcidid><oa>free_for_read</oa></addata></record> |
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subjects | Absorptivity Broadband Glass Gold Indium tin oxide Indium tin oxides Kerr effect Light interaction Noble metals nonlinear effects Nonlinear optics Nonlinear response Nonlinearity Optical films Optical imaging Optical materials optical properties of photonic materials Optics plasmonics Refractivity Signal processing ultrafast nonlinear process Ultrafast optics |
title | Enhancement of Optical Nonlinearity in the Triangular Gold Nanoplates on Indium Tin Oxide |
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