We report on the demonstration of three-dimensional optical trapping inside the core of a hollow-core microstructured optical fiber specifically designed and fabricated for this purpose. Optical trapping was achieved by means of an external tweezers beam incident transversely on the fiber and focused through the fiber cladding. Trapping was achieved for a range of particle sizes from 1 to 5 μm, and manipulation of the particles in three-dimensions through the entire cross-section of the fiber core was demonstrated. Spectroscopy was also performed on single fluorescent particles, with the fluorescence captured and guided in the fiber core. Video tracking methods allowed the optical traps to be characterized and photobleaching of single parti...
We report a novel optothermal trapping mechanism that occurs in air-filled hollow-core photonic crys...
We report a novel optothermal trapping mechanism that occurs in air-filled hollow-core photonic crys...
Optical trapping of sub−micrometer particles in three dimensions has been attracting increasing atte...
We report on the demonstration of three-dimensional optical trapping inside the core of a hollow-cor...
We report on the demonstration of three-dimensional optical trapping inside the core of a hollow-cor...
Hollow-core photonic crystal fiber (HC-PCF) confines and guides light in its hollow core. When a di...
We present detailed instructions for constructing and operating an optical trap using a hollow core ...
A single optical fiber probe has been used to trap a solid 2 ìm diameter glass bead in 3-D in water....
Optical tweezers represent a powerful tool for a variety of applications both in biology and in phys...
Optical tweezers represent a powerful tool for a variety of applications both in biology and in phys...
Optical trapping has found wide range of applications because it allows for precise control and posi...
Micrometer-sized particles are trapped in front of an air-filled hollow-core photonic crystal fiber ...
Micrometer-sized particles are trapped in front of an air-filled hollow-core photonic crystal fiber ...
During the last decade, the development of optofluidic chips has become a large field of research. T...
We propose to optically trap nanoparticles utilizing a single nanostructured glass-fiber tip. 3D tra...
We report a novel optothermal trapping mechanism that occurs in air-filled hollow-core photonic crys...
We report a novel optothermal trapping mechanism that occurs in air-filled hollow-core photonic crys...
Optical trapping of sub−micrometer particles in three dimensions has been attracting increasing atte...
We report on the demonstration of three-dimensional optical trapping inside the core of a hollow-cor...
We report on the demonstration of three-dimensional optical trapping inside the core of a hollow-cor...
Hollow-core photonic crystal fiber (HC-PCF) confines and guides light in its hollow core. When a di...
We present detailed instructions for constructing and operating an optical trap using a hollow core ...
A single optical fiber probe has been used to trap a solid 2 ìm diameter glass bead in 3-D in water....
Optical tweezers represent a powerful tool for a variety of applications both in biology and in phys...
Optical tweezers represent a powerful tool for a variety of applications both in biology and in phys...
Optical trapping has found wide range of applications because it allows for precise control and posi...
Micrometer-sized particles are trapped in front of an air-filled hollow-core photonic crystal fiber ...
Micrometer-sized particles are trapped in front of an air-filled hollow-core photonic crystal fiber ...
During the last decade, the development of optofluidic chips has become a large field of research. T...
We propose to optically trap nanoparticles utilizing a single nanostructured glass-fiber tip. 3D tra...
We report a novel optothermal trapping mechanism that occurs in air-filled hollow-core photonic crys...
We report a novel optothermal trapping mechanism that occurs in air-filled hollow-core photonic crys...
Optical trapping of sub−micrometer particles in three dimensions has been attracting increasing atte...