Person: Evans, Christopher
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Publication Induction of Synovial Apoptosis by Gene Transfer and Peptide Mediated Protein Transduction
(BioMed Central, 2001) Oligino, TJ; Yao, Q; Wang, S; Glorioso, JC; Evans, Christopher; Ghivizzani, SC; Takate, R; Barton, R; Robbins, PDPublication Transfer and Intra-Articular Expression of the IL-1Ra cDNA in Human Rheumatoid Joints
(BioMed Central, 2001) Robbins, PD; Ghivizzani, SC; Herndon, JH; Wasko, MC; Tomaino, M; Kang, R; Muzzonigro, TA; Whiteside, TL; Watkins, SC; Evans, Christopher; Elder, EMPublication Gene Therapy for Cartilage Healing
(BioMed Central, 2001) Ghivizzani, SC; Oligino, TJ; Gouze-Decaris, E; Palmer, G.; Robbins, PD; Evans, ChristopherPublication In Vitro and in Vivo Gene Delivery using a Lentiviral Vector
(BioMed Central, 2001) Gouze-Decaris, E; Pawliuk, R; Pilapil, C; Leboulch, Philippe; Evans, Christopher; Ghivizzani, SCPublication Viral, Nonviral and Peptide-Mediated Intra-Articular Transfer of Genes and Proteins
(BioMed Central, 2001) Robbins, P. D.; Mi, Z.; Lu, X.; Mai, J.; Ghivizanni, S. C.; Evans, Christopher; Oligino, T. J.Publication Update on the Contralateral Effect in Rabbit and Mouse Models
(BioMed Central, 2001) Robbins, P. D.; Lechman, E. R.; Kim, S.-H.; Gambotto, A.; Whalen, J.; Ghivizanni, S. C.; Evans, Christopher; Mi, Z.; Oligino, T. J.Publication Efficient photon triplet generation in integrated nanophotonic waveguides
(The Optical Society, 2016) Moebius, Michael; Herrera, Felipe; Griesse-Nascimento, Sarah; Reshef, Orad; Evans, Christopher; Guerreschi, Gian Giacomo; Aspuru-Guzik, Alan; Mazur, EricGeneration of entangled photons in nonlinear media constitutes a basic building block of modern photonic quantum technology. Current optical materials are severely limited in their ability to produce three or more entangled photons in a single event due to weak nonlinearities and challenges achieving phase-matching. We use integrated nanophotonics to enhance nonlinear interactions and develop protocols to design multimode waveguides that enable sustained phase-matching for third order spontaneous parametric down-conversion (TOSPDC). We predict a generation efficiency of 0.13 triplets/s/mW of pump power in TiO2- based integrated waveguides, an order of magnitude higher than previous theoretical and experimental demonstrations. We experimentally verify our device design methods in TiO2 waveguides using third-harmonic generation (THG), the reverse process of TOSPDC that is subject to the same phase-matching constraints. We finally discuss the effect of finite detector bandwidth and photon losses on the energy-time coherence properties of the expected TOSPDC source.