When an ultrathin silver nanowire with a diameter less than 100 nm is placed on a photonic band gap structure, surface plasmons can be excited and propagate along two side-walls of the silver nanowire. Although the diameter of the silver nanowire is far below the diffraction limit, two bright lines can be clearly observed at the image plane by a standard wide-field optical microscope. Simulations suggest that the two bright lines in the far-field are caused by the unique phase distribution of plasmons on the two side-walls of the silver nanowire. Combining with the sensing ability of surface plasmons to its environment, the configuration reported in this work is capable of functioning as a sensing platform to monitor environmental changes i...
Surface plasmons, the quanta of the collective oscillations of free electrons at metal surface, can ...
Interaction of light with a nanoapertured metal film has been the subject of extensive study because...
We image the field enhancement at Ag nanostructures using femtosecond laser pulses with a center wav...
Near-field imaging is a powerful tool to investigate the complex structure of light at the nanoscale...
Metal nanostructures have received considerable attention for their ability to guide and manipulate ...
International audienceWe use a photon scanning tunneling microscope to probe the field of surface pl...
Using quantum dot fluorescence imaging, we investigated the interference of surface plasmon beams in...
grantor: University of TorontoNear-field scanning optical microscopy (NSOM) has become a w...
International audienceThin gold stripes, featuring various widths in the micrometer range, were micr...
Near-field imaging is a powerful tool to investigate the complex structure of light at the nanoscale...
Plasmons, i.e. collective oscillations of conduction electrons, have a strong influence on the optic...
Noble metal structures with size in the sub 100 nm range exhibit extraordinary optical properties du...
We demonstrate a far-field single molecule super-resolution method that maps plasmonic near-fields. ...
We show that the local electric field distribution of propagating plasmons along silver nanowires ca...
We propose a wide-field super-resolved optical microscopic imaging technique based on subwavelength ...
Surface plasmons, the quanta of the collective oscillations of free electrons at metal surface, can ...
Interaction of light with a nanoapertured metal film has been the subject of extensive study because...
We image the field enhancement at Ag nanostructures using femtosecond laser pulses with a center wav...
Near-field imaging is a powerful tool to investigate the complex structure of light at the nanoscale...
Metal nanostructures have received considerable attention for their ability to guide and manipulate ...
International audienceWe use a photon scanning tunneling microscope to probe the field of surface pl...
Using quantum dot fluorescence imaging, we investigated the interference of surface plasmon beams in...
grantor: University of TorontoNear-field scanning optical microscopy (NSOM) has become a w...
International audienceThin gold stripes, featuring various widths in the micrometer range, were micr...
Near-field imaging is a powerful tool to investigate the complex structure of light at the nanoscale...
Plasmons, i.e. collective oscillations of conduction electrons, have a strong influence on the optic...
Noble metal structures with size in the sub 100 nm range exhibit extraordinary optical properties du...
We demonstrate a far-field single molecule super-resolution method that maps plasmonic near-fields. ...
We show that the local electric field distribution of propagating plasmons along silver nanowires ca...
We propose a wide-field super-resolved optical microscopic imaging technique based on subwavelength ...
Surface plasmons, the quanta of the collective oscillations of free electrons at metal surface, can ...
Interaction of light with a nanoapertured metal film has been the subject of extensive study because...
We image the field enhancement at Ag nanostructures using femtosecond laser pulses with a center wav...