As an effective tool for micro/nano-scale particle manipulation, plasmonic optical tweezers can be used to manipulate cells, DNA, and macromolecules. Related research is of great significance to the development of nanoscience. In this work, we investigated a sub-wavelength particle manipulation technique based on plasmonic optical tweezers. When the local plasmonic resonance is excited on the gold nanostructure arrays, the local electromagnetic field will be enhanced to generate a strong gradient force acting on nanoparticles, which could achieve particle sorting in sub-wavelength scale. On this basis, we explored the plasmonic enhancement effect of the sorting device and the corresponding optical force and optical potential well distributi...
Plasmonic optical tweezers can overcome the diffraction limits of conventional optical tweezers and ...
Optical tweezers are well-established as a tool for non-contact, non-destructive handling of biologi...
We present an experimental technique allowing size-based all-optical sorting of gold nanoparticles. ...
As an effective tool for micro/nano-scale particle manipulation, plasmonic optical tweezers can be u...
Inspired by the idea of combining conventional optical tweezers with plasmonic nanostructures, a tec...
The ability of metallic nanostructures to confine light at the sub-wavelength scale enables new pers...
Optical manipulation – using light to control matter – is based on the transfer of momentum from con...
Optical tweezers and associated manipulation tools in the far field have had a major impact on scien...
Optical tweezers are a very well-established technique that have developed into a standard tool for ...
Optical tweezers and associated manipulation tools in the far field have had a major impact on scien...
Conventional optical tweezers, formed at the diffraction-limited focus of a laser beam, have become ...
Optical manipulation has attracted remarkable interest owing to its versatile and noninvasive nature...
We present an experimental technique allowing size-based all-optical sorting of gold nanoparticles. ...
We present an experimental technique allowing size-based all-optical sorting of gold nanoparticles. ...
We present an experimental technique allowing size-based all-optical sorting of gold nanoparticles. ...
Plasmonic optical tweezers can overcome the diffraction limits of conventional optical tweezers and ...
Optical tweezers are well-established as a tool for non-contact, non-destructive handling of biologi...
We present an experimental technique allowing size-based all-optical sorting of gold nanoparticles. ...
As an effective tool for micro/nano-scale particle manipulation, plasmonic optical tweezers can be u...
Inspired by the idea of combining conventional optical tweezers with plasmonic nanostructures, a tec...
The ability of metallic nanostructures to confine light at the sub-wavelength scale enables new pers...
Optical manipulation – using light to control matter – is based on the transfer of momentum from con...
Optical tweezers and associated manipulation tools in the far field have had a major impact on scien...
Optical tweezers are a very well-established technique that have developed into a standard tool for ...
Optical tweezers and associated manipulation tools in the far field have had a major impact on scien...
Conventional optical tweezers, formed at the diffraction-limited focus of a laser beam, have become ...
Optical manipulation has attracted remarkable interest owing to its versatile and noninvasive nature...
We present an experimental technique allowing size-based all-optical sorting of gold nanoparticles. ...
We present an experimental technique allowing size-based all-optical sorting of gold nanoparticles. ...
We present an experimental technique allowing size-based all-optical sorting of gold nanoparticles. ...
Plasmonic optical tweezers can overcome the diffraction limits of conventional optical tweezers and ...
Optical tweezers are well-established as a tool for non-contact, non-destructive handling of biologi...
We present an experimental technique allowing size-based all-optical sorting of gold nanoparticles. ...