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This study explores the interplay between Josephson oscillations and self-trapping phenomena in optical waveguide arrays. By employing theoretical frameworks and experimental insights, we uncover how these two effects coexist within the context of nonlinear dynamics. This research is significant for advancing our understanding of waveguide systems and quantum optics, potentially leading to developments in quantum technologies. The findings may enhance applications involving Bose-Einstein condensates in optical lattices and contribute to the field of photonics.
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Coexistence of Josephson Oscillations and Self Trapping in Optical Waveguide Arrays Ramaz Khomeriki Dipartimento di Energetica ‘‘S. Stecco’’ and CSDC, Università di Firenze, and INFN, Via S. Marta, 3, 50139 Firenze, ITALY Physics Department, Tbilisi State University, 0128 Tbilisi, GEORGIA In collaboration with Jerome Leon (Montpellier, FRANCE) Stefano Ruffo (Firenze, ITALY) Sandro Wimberger (Pisa, ITALY)
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