A novel phase modulation method for dynamic manipulation of surface plasmon polaritons (SPPs) with a phase engineered optical vortex (OV) beam illuminating on nanoslits is experimentally demonstrated. Because of the unique helical phase carried by an OV beam, dynamic control of SPP multiple focusing and standing wave generation is realized by changing the OV beam's topological charge constituent with the help of a liquid-crystal spatial light modulator. Measurement of SPP distributions with near-field scanning optical microscopy showed an excellent agreement with numerical predictions. The proposed phase modulation technique for manipulating SPPs features has seemingly dynamic and reconfigurable advantages, with profound potential for devel...
We theoretically investigate the generation of far-field propagating optical beams with a desired or...
Imparting orbital angular momentum (OAM) to particle beams opens unique opportunities for applicatio...
We report the experimental generation and dynamic trajectory control of plasmonic Airy beams (PABs)....
A novel phase modulation method for dynamic manipulation of surface plasmon polaritons (SPPs) with a...
Dynamic generation of plasmonic Moiré fringes using a phase engineered optical vortex (OV) beam is e...
Electromagnetic waves carrying orbital angular momentum (OAM), namely, vortex beams, have a plethora...
We extend the phase modulation method by in-plane diffractions from plane wave incidence to point so...
Polarization�phase interaction on the nanoscale is the cause of many unique effects that are absent ...
We propose a form of flexible wavefront manipulation of surface plasmon polaritons (SPPs) without an...
Surface plasmon polaritons are electromagnetic waves that propagate tightly bound to metal surfaces....
Demonstrated that analog of diffractive and refractive 3D optics in free space can be developed to m...
Novel hybrid-polarized vector beams with radial and azimuthal polarization states in arbitrary fan-s...
The optical vortex (OV) beams characterized by orbital angular momentum (OAM) possess ubiquitous app...
Multifunctional optical devices are desirable at all times due to their features of flexibility and ...
In previous work we demonstrated how a confocal microscope with a spatial light modulator in the bac...
We theoretically investigate the generation of far-field propagating optical beams with a desired or...
Imparting orbital angular momentum (OAM) to particle beams opens unique opportunities for applicatio...
We report the experimental generation and dynamic trajectory control of plasmonic Airy beams (PABs)....
A novel phase modulation method for dynamic manipulation of surface plasmon polaritons (SPPs) with a...
Dynamic generation of plasmonic Moiré fringes using a phase engineered optical vortex (OV) beam is e...
Electromagnetic waves carrying orbital angular momentum (OAM), namely, vortex beams, have a plethora...
We extend the phase modulation method by in-plane diffractions from plane wave incidence to point so...
Polarization�phase interaction on the nanoscale is the cause of many unique effects that are absent ...
We propose a form of flexible wavefront manipulation of surface plasmon polaritons (SPPs) without an...
Surface plasmon polaritons are electromagnetic waves that propagate tightly bound to metal surfaces....
Demonstrated that analog of diffractive and refractive 3D optics in free space can be developed to m...
Novel hybrid-polarized vector beams with radial and azimuthal polarization states in arbitrary fan-s...
The optical vortex (OV) beams characterized by orbital angular momentum (OAM) possess ubiquitous app...
Multifunctional optical devices are desirable at all times due to their features of flexibility and ...
In previous work we demonstrated how a confocal microscope with a spatial light modulator in the bac...
We theoretically investigate the generation of far-field propagating optical beams with a desired or...
Imparting orbital angular momentum (OAM) to particle beams opens unique opportunities for applicatio...
We report the experimental generation and dynamic trajectory control of plasmonic Airy beams (PABs)....