Optical tweezers and associated manipulation tools in the far field have had a major impact on scientific and engineering research by offering precise manipulation of small objects. More recently, the possibility of performing manipulation with surface plasmons has opened opportunities not feasible with conventional far-field optical methods. The use of surface plasmon techniques enables excitation of hotspots much smaller than the free-space wavelength; with this confinement, the plasmonic field facilitates trapping of various nanostructures and materials with higher precision. The successful manipulation of small particles has fostered numerous and expanding applications. In this paper, we review the principles of and developments in plas...
We review recent advances achieved in the field of surface plasmon-based optical manipulations. We f...
Recent advances in nanotechnologies have prompted the need for tools to accurately and non-invasivel...
Optical tweezers are powerful and versatile tools for optical micromanipulation, and have emerged as...
Optical tweezers and associated manipulation tools in the far field have had a major impact on scien...
Plasmonic optical tweezers can overcome the diffraction limits of conventional optical tweezers and ...
Plasmonic optical tweezers can overcome the diffraction limits of conventional optical tweezers and ...
This Perspective describes recent progress in optical trappings of nanoparticles based on localized ...
Conventional optical tweezers, formed at the diffraction-limited focus of a laser beam, have become ...
The ability of metallic nanostructures to confine light at the sub-wavelength scale enables new pers...
The ability of metallic nanostructures to confine light at the sub-wavelength scale enables new pers...
Inspired by the idea of combining conventional optical tweezers with plasmonic nanostructures, a tec...
Optical tweezers are a very well-established technique that have developed into a standard tool for ...
This work focuses on trapping subwavelength objects using resonant plasmonic structures. Trapping en...
Plasmonic apertures permit optical fields to be concentrated into sub-wavelength regions. This enhan...
As an effective tool for micro/nano-scale particle manipulation, plasmonic optical tweezers can be u...
We review recent advances achieved in the field of surface plasmon-based optical manipulations. We f...
Recent advances in nanotechnologies have prompted the need for tools to accurately and non-invasivel...
Optical tweezers are powerful and versatile tools for optical micromanipulation, and have emerged as...
Optical tweezers and associated manipulation tools in the far field have had a major impact on scien...
Plasmonic optical tweezers can overcome the diffraction limits of conventional optical tweezers and ...
Plasmonic optical tweezers can overcome the diffraction limits of conventional optical tweezers and ...
This Perspective describes recent progress in optical trappings of nanoparticles based on localized ...
Conventional optical tweezers, formed at the diffraction-limited focus of a laser beam, have become ...
The ability of metallic nanostructures to confine light at the sub-wavelength scale enables new pers...
The ability of metallic nanostructures to confine light at the sub-wavelength scale enables new pers...
Inspired by the idea of combining conventional optical tweezers with plasmonic nanostructures, a tec...
Optical tweezers are a very well-established technique that have developed into a standard tool for ...
This work focuses on trapping subwavelength objects using resonant plasmonic structures. Trapping en...
Plasmonic apertures permit optical fields to be concentrated into sub-wavelength regions. This enhan...
As an effective tool for micro/nano-scale particle manipulation, plasmonic optical tweezers can be u...
We review recent advances achieved in the field of surface plasmon-based optical manipulations. We f...
Recent advances in nanotechnologies have prompted the need for tools to accurately and non-invasivel...
Optical tweezers are powerful and versatile tools for optical micromanipulation, and have emerged as...