The ability to controllably handle the smallest materials is a fundamental enabling technology for nanoscience. Conventional optical tweezers have proven useful for manipulating microscale objects but cannot exert enough force to manipulate dielectric materials smaller than about 100 nm. Recently, several near-field optical trapping techniques have been developed that can provide higher trapping stiffness, but they tend to be limited in their ability to reversibly trap and release smaller materials due to a combination of the extremely high electromagnetic fields and the resulting local temperature rise. Here, we have developed a new form of photonic crystal “nanotweezer” that can trap and release on-command Wilson disease proteins, quantum...
In this article, we discuss the basic principles of optical manipulation of nanoparticles to micron ...
The three-dimensional structure of a protein, which is used to deduce its biological function as req...
In the three decades since the development of optical tweezers, optical trapping has become an inval...
The ability to controllably handle the smallest materials is a fundamental enabling technology for n...
Thesis (Ph.D.)--University of Washington, 2017-08Optical Tweezers is a valuable and versatile tool i...
Recent advances in nanotechnologies have prompted the need for tools to accurately and non-invasivel...
A microfluidic evanescent field optical tweezer system was tested and developed for sample delivery ...
This dissertation aims to develop nanophotonic technologies by integrating photonic-crystal-based na...
We show that the photonic confinement induced by a photonic crystal can be exploited to trap nanopar...
International audienceFourteen years ago, optical lattices and holographic tweezers were considered ...
Optical trapping has revolutionized our understanding of biology by manipulating cells and single mo...
In recent years, optical micromachines based on forces exerted by strongly focused beams of light ha...
ABSTRACT Optical tweezers1 have enabled a number of microscale processes such as single cell handlin...
This Perspective describes recent progress in optical trappings of nanoparticles based on localized ...
The ability of metallic nanostructures to confine light at the sub-wavelength scale enables new pers...
In this article, we discuss the basic principles of optical manipulation of nanoparticles to micron ...
The three-dimensional structure of a protein, which is used to deduce its biological function as req...
In the three decades since the development of optical tweezers, optical trapping has become an inval...
The ability to controllably handle the smallest materials is a fundamental enabling technology for n...
Thesis (Ph.D.)--University of Washington, 2017-08Optical Tweezers is a valuable and versatile tool i...
Recent advances in nanotechnologies have prompted the need for tools to accurately and non-invasivel...
A microfluidic evanescent field optical tweezer system was tested and developed for sample delivery ...
This dissertation aims to develop nanophotonic technologies by integrating photonic-crystal-based na...
We show that the photonic confinement induced by a photonic crystal can be exploited to trap nanopar...
International audienceFourteen years ago, optical lattices and holographic tweezers were considered ...
Optical trapping has revolutionized our understanding of biology by manipulating cells and single mo...
In recent years, optical micromachines based on forces exerted by strongly focused beams of light ha...
ABSTRACT Optical tweezers1 have enabled a number of microscale processes such as single cell handlin...
This Perspective describes recent progress in optical trappings of nanoparticles based on localized ...
The ability of metallic nanostructures to confine light at the sub-wavelength scale enables new pers...
In this article, we discuss the basic principles of optical manipulation of nanoparticles to micron ...
The three-dimensional structure of a protein, which is used to deduce its biological function as req...
In the three decades since the development of optical tweezers, optical trapping has become an inval...