We investigate the use of a hybrid nanoresonator comprising a photonic crystal (PhC) cavity coupled to a plasmonic bowtie nanoantenna (BNA) for the optical trapping of nanoparticles in water. Using finite-difference time-domain simulations, we show that this structure can confine light to an extremely small volume of ∼30,000nm3(∼30 zl) in the BNA gap whilst maintaining a high quality factor (5400–7700). The optical intensity inside the BNA gap is enhanced by a factor larger than 40 compared to when the BNA is not present above the PhC cavity. Such a device has potential applications in optical manipulation, creating high precision optical traps with an intensity gradient over a distance much smaller than the diffraction limit, potentially a...
We theoretically study hybrid photonic-plasmonic modes in a composite structure in which a silicon m...
This work was supported by the Engineering and Physical Sciences Research Council [grant number EP/L...
[EN] Hybrid photonic-plasmonic cavities have emerged as a new platform to increase light-matter inte...
We investigate the use of a hybrid nanoresonator comprising a photonic crystal (PhC) cavity coupled ...
We investigate the use of a hybrid nanoresonator comprising a photonic crystal (PhC) cavity coupled ...
We investigate the use of a hybrid photonic-plasmonic nanoresonator for optical trapping of nanopart...
Integrated optical nanotweezers offer a novel paradigm for optical trapping, as their ability to con...
We present the design and numerical characterization of a hybrid photonic-plasmonic nanoresonator co...
This work focuses on trapping subwavelength objects using resonant plasmonic structures. Trapping en...
Optical manipulation – using light to control matter – is based on the transfer of momentum from con...
Optical manipulation has attracted remarkable interest owing to its versatile and noninvasive nature...
Plasmonic nanostructures overcome Abbe’s diffraction limit to create strong gradient electric fields...
Optical tweezers are a very well-established technique that have developed into a standard tool for ...
The manipulation of microparticles using optical forces has led to many applications in the life and...
The ability of metallic nanostructures to confine light at the sub-wavelength scale enables new pers...
We theoretically study hybrid photonic-plasmonic modes in a composite structure in which a silicon m...
This work was supported by the Engineering and Physical Sciences Research Council [grant number EP/L...
[EN] Hybrid photonic-plasmonic cavities have emerged as a new platform to increase light-matter inte...
We investigate the use of a hybrid nanoresonator comprising a photonic crystal (PhC) cavity coupled ...
We investigate the use of a hybrid nanoresonator comprising a photonic crystal (PhC) cavity coupled ...
We investigate the use of a hybrid photonic-plasmonic nanoresonator for optical trapping of nanopart...
Integrated optical nanotweezers offer a novel paradigm for optical trapping, as their ability to con...
We present the design and numerical characterization of a hybrid photonic-plasmonic nanoresonator co...
This work focuses on trapping subwavelength objects using resonant plasmonic structures. Trapping en...
Optical manipulation – using light to control matter – is based on the transfer of momentum from con...
Optical manipulation has attracted remarkable interest owing to its versatile and noninvasive nature...
Plasmonic nanostructures overcome Abbe’s diffraction limit to create strong gradient electric fields...
Optical tweezers are a very well-established technique that have developed into a standard tool for ...
The manipulation of microparticles using optical forces has led to many applications in the life and...
The ability of metallic nanostructures to confine light at the sub-wavelength scale enables new pers...
We theoretically study hybrid photonic-plasmonic modes in a composite structure in which a silicon m...
This work was supported by the Engineering and Physical Sciences Research Council [grant number EP/L...
[EN] Hybrid photonic-plasmonic cavities have emerged as a new platform to increase light-matter inte...