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dc.contributor.author Μουτζούρης, Κωνσταντίνος Ι. el
dc.contributor.author Rao, Soma V. en
dc.contributor.author Ebrahimzadeh, Majid en
dc.contributor.author De Rossi, Alfredo en
dc.contributor.author Calligaro, Michel en
dc.date.accessioned 2015-06-05T18:25:19Z
dc.date.available 2015-06-05T18:25:19Z
dc.date.issued 2015-06-05
dc.identifier.uri http://hdl.handle.net/11400/15183
dc.rights Αναφορά Δημιουργού-Μη Εμπορική Χρήση-Όχι Παράγωγα Έργα 3.0 Ηνωμένες Πολιτείες *
dc.rights.uri http://creativecommons.org/licenses/by-nc-nd/3.0/us/ *
dc.source http://www.aip.org/ en
dc.subject Laser pulses
dc.subject Photons
dc.subject Waveguides
dc.subject Λέιζερ παλμών
dc.subject φωτόνια
dc.subject Κυματοδηγοί
dc.title Second-harmonic generation through optimized modal phase matching in semiconductor waveguides en
heal.type journalArticle
heal.classification Technology
heal.classification Electrical engineering
heal.classification Τεχνολογία
heal.classification Ηλεκτρολογία Μηχανολογία
heal.classificationURI http://id.loc.gov/authorities/subjects/sh85133147
heal.classificationURI http://zbw.eu/stw/descriptor/18426-4
heal.classificationURI **N/A**-Τεχνολογία
heal.classificationURI **N/A**-Ηλεκτρολογία Μηχανολογία
heal.keywordURI http://id.loc.gov/authorities/subjects/sh85101398
heal.contributorName Ortiz, Valentin en
heal.contributorName Berger, Vincent en
heal.identifier.secondary DOI: 10.1063/1.1596726
heal.language en
heal.access campus
heal.publicationDate 2003-07-28
heal.bibliographicCitation MOUTZOURIS, K.I., RAO, S.V., EBRAHIMZADEH, M., DE ROSSI, A., CALLIGARO, M., et al. (2003). Second-harmonic generation through optimized modal phase matching in semiconductor waveguides. Applied Physics Letters. [online] 83 (4). p. 620-622. Available from: http://www.aip.org/ en
heal.abstract Second-harmonic generation (SHG) through optimized modal phase matching in semiconductor waveguides was studied. Both type-I and type-II SHG were demonstrated for fundamental wavelengths near 1.55 μm, using femtosecond pulses. Practical SHG average powers of up to 10 μm were obtained with an average input power of 65 mW for the most efficient type-II interaction. en
heal.publisher American Institute of Physics en
heal.journalName Applied Physics Letters en
heal.journalType peer-reviewed
heal.fullTextAvailability true


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Αναφορά Δημιουργού-Μη Εμπορική Χρήση-Όχι Παράγωγα Έργα 3.0 Ηνωμένες Πολιτείες Except where otherwise noted, this item's license is described as Αναφορά Δημιουργού-Μη Εμπορική Χρήση-Όχι Παράγωγα Έργα 3.0 Ηνωμένες Πολιτείες