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Optically Tunable D...
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Liu, FangfeiState Key Laboratory of Advanced Optical Communication Systems and Networks, Department of Electronic Engineering, Shanghai Jiao Tong University
(författare)
Optically Tunable Delay Line in Silicon Microring Resonator Based on Thermal Nonlinear Effect
- Artikel/kapitelEngelska2008
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LIBRIS-ID:oai:DiVA.org:kth-8026
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https://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-8026URI
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https://doi.org/10.1109/JSTQE.2008.916240DOI
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Språk:engelska
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Sammanfattning på:engelska
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Ämneskategori:art swepub-publicationtype
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QC 20100923. Uppdaterad från in press till published (20100923).
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We experimentally demonstrate optically tunable delay fine in a silicon microring resonator with a 20-mu m radius. The delay-tuning mechanism is based on the red shift of the resonance induced by thermal nonlinear effect. We investigate the delay performance of three modulation formats-non-return-to-zero (NRZ), return-to-zero (RZ), and differential phase-shift keying (DPSK) signals at different data rates. Tunable delay is achieved by controlling the power of the continuous-wave (CW) pump with very low tuning threshold, which could be used in microring-resonator-based slow-light structure.
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Biuppslag (personer, institutioner, konferenser, titlar ...)
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Li, QiangState Key Laboratory of Advanced Optical Communication Systems and Networks, Department of Electronic Engineering, Shanghai Jiao Tong University
(författare)
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Zhang, ZiyangKTH,Mikroelektronik och tillämpad fysik, MAP(Swepub:kth)u12ueuqj
(författare)
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Qiu, MinKTH,Mikroelektronik och tillämpad fysik, MAP(Swepub:kth)u11okd66
(författare)
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Su, YikaiState Key Laboratory of Advanced Optical Communication Systems and Networks, Department of Electronic Engineering, Shanghai Jiao Tong University
(författare)
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State Key Laboratory of Advanced Optical Communication Systems and Networks, Department of Electronic Engineering, Shanghai Jiao Tong UniversityMikroelektronik och tillämpad fysik, MAP
(creator_code:org_t)
Sammanhörande titlar
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Ingår i:IEEE Journal of Selected Topics in Quantum Electronics14:3, s. 706-7121077-260X1558-4542
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