Optical trapping describes the interaction between light and matter to manipulate micro-objects through momentum transfer. In the case of 3D trapping with a single beam, this is termed optical tweezers. Optical tweezers are a powerful and noninvasive tool for manipulating small objects, and have become indispensable in many fields, including physics, biology, soft condensed matter, among others. In the early days, optical trapping was typically accomplished with a single Gaussian beam. In recent years, we have witnessed rapid progress in the use of structured light beams with customized phase, amplitude, and polarization in optical trapping. Unusual beam properties, such as phase singularities on-axis and propagation invariant nature, have ...
Manipulation with microscopic objects facilitated deeper understanding of the light-matter interact...
Very high frequency oscillations of intense light fields interact with micron-size dielectric object...
This thesis explores the structures and dynamics of optically confined matter, ranging from single p...
Funding: This work was supported by the National Natural Science Foundation of China (11874102 and 6...
The phenomenon of light's momentum was first observed in the laboratory at the beginning of the twen...
For optical tweezers, a tiny focal spot of the trapping beam is necessary for providing sufficient i...
Optical tweezers are an innovative technique for the non-contact, all-optical manipulation of small ...
Optical tweezers, formed by a highly focused laser beam, have intriguing applications in biology and...
We experimentally demonstrate stable trapping and controlled manipulation of silica microspheres in ...
In this article, we discuss the basic principles of optical manipulation of nanoparticles to micron ...
It is now well known that matter may be trapped by optical fields with high intensity gradients. Onc...
Since the invention of optical tweezers, optical manipulation has advanced significantly in scientif...
Optical tweezers(1) are commonly used for manipulating microscopic particles, with applications in c...
An optical tweezers technique is used for ultraprecise micromanipulation to measure positions of mic...
Interferometry can completely redirect light, providing the potential for strong and controllable op...
Manipulation with microscopic objects facilitated deeper understanding of the light-matter interact...
Very high frequency oscillations of intense light fields interact with micron-size dielectric object...
This thesis explores the structures and dynamics of optically confined matter, ranging from single p...
Funding: This work was supported by the National Natural Science Foundation of China (11874102 and 6...
The phenomenon of light's momentum was first observed in the laboratory at the beginning of the twen...
For optical tweezers, a tiny focal spot of the trapping beam is necessary for providing sufficient i...
Optical tweezers are an innovative technique for the non-contact, all-optical manipulation of small ...
Optical tweezers, formed by a highly focused laser beam, have intriguing applications in biology and...
We experimentally demonstrate stable trapping and controlled manipulation of silica microspheres in ...
In this article, we discuss the basic principles of optical manipulation of nanoparticles to micron ...
It is now well known that matter may be trapped by optical fields with high intensity gradients. Onc...
Since the invention of optical tweezers, optical manipulation has advanced significantly in scientif...
Optical tweezers(1) are commonly used for manipulating microscopic particles, with applications in c...
An optical tweezers technique is used for ultraprecise micromanipulation to measure positions of mic...
Interferometry can completely redirect light, providing the potential for strong and controllable op...
Manipulation with microscopic objects facilitated deeper understanding of the light-matter interact...
Very high frequency oscillations of intense light fields interact with micron-size dielectric object...
This thesis explores the structures and dynamics of optically confined matter, ranging from single p...