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Chiral optical tweezers for optically active particles in the T-matrix formalism
ArticleAbstract: Modeling optical tweezers in the T-matrix formalism has been of key importance for accurate and effiPalabras claves:Autores:Biagioni P., Denti P., Maragó O.M., Maria Antonia Iatì, Patti F., Pellegrini G., Saija R.Fuentes:scopusCorrection to: Optical tweezers in a dusty universe (The European Physical Journal Plus, (2021), 136, 3, (339), 10.1140/epjp/s13360-021-01316-z)
OtherAbstract: The project number was missing from the acknowledgement. The correct acknowledgment is as follows: WPalabras claves:Autores:Ammannito E., Bertini I., Cecchi-Pestellini C., Ciaravella A., Ciriza D.B., Della Corte V., Donato M.G., Escobar A.J., Folco L., Foti A., Gucciardi P.G., Inno L., Magazzù A., Maragó O.M., Maria Antonia Iatì, Polimeno P., Rotundi A., Saidi A., Saija R., Sindoni G.Fuentes:scopusGain-Assisted Optomechanical Position Locking of Metal/Dielectric Nanoshells in Optical Potentials
ArticleAbstract: We investigate gain-assisted optical forces on dye-enriched silver nanoshell in the quasi-static limPalabras claves:gain materials, nanoshells, Optical manipulation, Optical trappingAutores:Alessandro Veltri, Jonathan Sánchez, Maragó O.M., Maria Antonia Iatì, Melissa Infusino, Patti F., Polimeno P., Saija R., Volpe G.Fuentes:googlescopusFaster and More Accurate Geometrical-Optics Optical Force Calculation Using Neural Networks
ArticleAbstract: Optical forces are often calculated by discretizing the trapping light beam into a set of rays and uPalabras claves:ellipsoids, Kramer’s rate, Machine learning, optical forces, Optical tweezersAutores:Barbosa G., Bronte Ciriza D., Callegari A., Magazzù A., Maragó O.M., Maria Antonia Iatì, Neves A.A.R., Volpe G.Fuentes:scopusSpectral shift between the near-field and far-field optoplasmonic response in gold nanospheres, nanoshells, homo- and hetero-dimers
ArticleAbstract: We investigate the shift between near- and far-field spectral properties in a set of different goldPalabras claves:Light scattering, Metal nanoparticles, Optoplasmonics, Surface enhanced spectroscopiesAutores:Borghese F., Cacciola A., Denti P., Gucciardi P.G., Maragó O.M., Maria Antonia Iatì, Saija R.Fuentes:scopusT-matrix calculations of spin-dependent optical forces in optically trapped nanowires
ArticleAbstract: We present computational results associated with the onset of a spin-dependent optical force componePalabras claves:Autores:Brzobohatý O., Esposti Boschi C.D., Maragó O.M., Maria Antonia Iatì, Polimeno P., Saija R., Simpson S.H., Svak V., Zemánek P.Fuentes:scopusShaping of the trapping volume in optical tweezers using cylindrical vector beams
Conference ObjectAbstract:Palabras claves:Autores:Jones P.H., Maragó O.M., Maria Antonia Iatì, Saija R., Sergides M., Skelton S.E.Fuentes:scopusOptical forces in the T-matrix formalism
ArticleAbstract: Optical tweezers are a crucial tool for the manipulation and characterisation, without mechanical coPalabras claves:Autores:Esposti Boschi C.D., Maragó O.M., Maria Antonia Iatì, Polimeno P., Saija R.Fuentes:scopusOptical trapping and optical force positioning of two-dimensional materials
ArticleAbstract: In recent years, considerable effort has been devoted to the synthesis and characterization of two-dPalabras claves:Autores:Donato M.G., Foti A., Gucciardi P.G., Jones P.H., Maragó O.M., Maria Antonia Iatì, Messina E., Saija R., Smart T.J.Fuentes:scopusOptical tweezers in a dusty universe: Modeling optical forces for space tweezers applications
ArticleAbstract: Optical tweezers are powerful tools based on focused laser beams. They are able to trap, manipulate,Palabras claves:Autores:Ammannito E., Bertini I., Bronte Ciriza D., Cecchi-Pestellini C., Ciaravella A., Della Corte V., Donato M.G., Folco L., Foti A., Gucciardi P.G., Inno L., Jimenez Escobar A., Magazzù A., Maragó O.M., Maria Antonia Iatì, Polimeno P., Rotundi A., Saidi A., Saija R., Sindoni G.Fuentes:scopus