Photovoltaic tweezers an emergent tool for applications in nano and bio-technology
Entidad
UAM. Departamento de Física de MaterialesEditor
Grilli, S.; Ferraro P.; Ritsch-Marte M.; Stifter D.Fecha de edición
2015-01-01Cita
10.1117/12.2186173
Proceedings of SPIE - The International Society for Optical Engineering 9529 (2015): 95290Q
ISSN
1996-756X (online); 0277-786X (print)DOI
10.1117/12.2186173Financiado por
This work was supported by projects MAT2011-28379-C03 and MAT2014-57704-C3Proyecto
Gobierno de España. MAT2011-28379-C03; Gobierno de España. MAT2014-57704-C3Versión del editor
http://dx.doi.org/10.1117/12.2186173Materias
Optical tweezers; Bio-object patterning; Bulk photovoltaic effect; Photorefractive LiNbO3; Photovoltaic tweezers; Plasmonic structures; FísicaDerechos
© 2015 SPIEResumen
An overview of the work recently conducted by our group on the development and applications of photovoltaic tweezers is presented. It includes the analysis of the physical basis of the method and the main achievements in its experimental implementation. Particular attention will be paid to the main potential applications and first demonstrations of its use in nano- and bio-technology. Specifically: i) fabrication of metallic nanoestructures for plasmonic applications, ii) development of diffractive components, iii) manipulation and patterning (1D and 2D) of various types of bio-objects (spores or pollen…) and iv) effects of PV fields of LiNbO3 in tumour cells
Lista de ficheros
Google Scholar:Carrascosa Rico, Mercedes
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García Cabañes, Ángel
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Jubera, M.
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Elvira, I.
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Burgos, H.
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Bella Sombría, José Luis
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Agulló López, Fernando
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Muñoz-Martínez, Juan F.
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Alcazar, A.
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