Radiation torque and force on optically trapped linear nanostructures
Abstract:
We study the optical trapping of highly elongated linear nanostructures in the focal region of a high-numerical aperture lens (optical tweezers). The radiation torque and trapping force on these nanostructures that are modeled as chains of identical spherical scatterers are calculated by means of multipole field expansions in the framework of the transition matrix approach. We investigate both orientational and trapping stability and calculate force constants and trap parameters in order to clarify the role of the linear geometry in the optical trapping mechanism. Furthermore, we calculate optical trapping of nanowires of different materials and compare our theoretical findings with available experimental results. © 2008 The American Physical Society.
Año de publicación:
2008
Keywords:
Fuente:
Tipo de documento:
Article
Estado:
Acceso restringido
Áreas de conocimiento:
- Fibra óptica
- Nanostructura
Áreas temáticas:
- Luz y radiaciones afines
- Electricidad y electrónica
- Magnetismo