Following a brief overview of the physics underlying the interaction of twisted light with atoms at near-resonance frequencies, the essential ingredients of the interaction of atoms with surface optical vortices are described. It is shown that surface optical vortices can offer an unprecedented potential for the nanoscale manipulation of absorbed atoms congregating at regions of extremum light intensity on the surface
We study the spontaneous emission of atoms near an optical nanofiber and analyze the coupling effici...
The interaction of ultrafast laser pulses with surfaces on the nanoscale paves the way for various i...
Recently, emerging from studies based on quantum electrodynamics, it has been shown possible to sign...
Following a brief overview of the physics underlying the interaction of twisted light with atoms at ...
It is shown how the total internal reflection of orbital-angular-momentum-endowed light can lead to ...
The total internal reflection of an optical beam with a phase singularity can generate evanescent li...
The physics of optical vortices, also known as twisted light, is now a well-established and a growin...
New possibilities have recently emerged for producing optical beams with complex and intricate struc...
The interaction of atoms and molecules with structured light, specifically laser light endowed with ...
We explain how a surface plasmon optical vortex can be created when a laser beam with a phase singul...
An optical mode is generated in vacuum by the total internal reflection of a beam, at the planar sur...
In this article, we discuss the basic principles of optical manipulation of nanoparticles to micron ...
Since the invention of optical tweezers, optical manipulation has advanced significantly in scientif...
Based on the focused optical vortex (OV) generated by a metalens, we studied the physical mechanism ...
We concentrate on the forces and torques exerted on transparent and absorbing particles trapped in l...
We study the spontaneous emission of atoms near an optical nanofiber and analyze the coupling effici...
The interaction of ultrafast laser pulses with surfaces on the nanoscale paves the way for various i...
Recently, emerging from studies based on quantum electrodynamics, it has been shown possible to sign...
Following a brief overview of the physics underlying the interaction of twisted light with atoms at ...
It is shown how the total internal reflection of orbital-angular-momentum-endowed light can lead to ...
The total internal reflection of an optical beam with a phase singularity can generate evanescent li...
The physics of optical vortices, also known as twisted light, is now a well-established and a growin...
New possibilities have recently emerged for producing optical beams with complex and intricate struc...
The interaction of atoms and molecules with structured light, specifically laser light endowed with ...
We explain how a surface plasmon optical vortex can be created when a laser beam with a phase singul...
An optical mode is generated in vacuum by the total internal reflection of a beam, at the planar sur...
In this article, we discuss the basic principles of optical manipulation of nanoparticles to micron ...
Since the invention of optical tweezers, optical manipulation has advanced significantly in scientif...
Based on the focused optical vortex (OV) generated by a metalens, we studied the physical mechanism ...
We concentrate on the forces and torques exerted on transparent and absorbing particles trapped in l...
We study the spontaneous emission of atoms near an optical nanofiber and analyze the coupling effici...
The interaction of ultrafast laser pulses with surfaces on the nanoscale paves the way for various i...
Recently, emerging from studies based on quantum electrodynamics, it has been shown possible to sign...