We have developed a scheme to measure the optical torque, exerted by a laser beam on a phase object, by measuring the orbital angular momentum of the transmitted beam. The experiment is a macroscopic simulation of a situation in optical tweezers, as orbital angular momentum has been widely used to apply torque to microscopic objects. A hologram designed to generate LG02 modes and a CCD camera are used to detect the orbital component of the beam. Experimental results agree with theoretical numerical calculations, and the strength of the orbital component suggest its usefulness in optical tweezers for micromanipulation
We present details of the design, construction and testing of a single-beam optical tweezers apparat...
Optical traps are an important tool for research in the field of single molecule biophysics. Recent ...
In recent years there has been an explosive development of interest in the measurement of forces at ...
Several techniques have been proposed and used for the rotation or alignment of microparticles in op...
We describe a way to determine the total angular momentum, both spin and orbital, transferred to a p...
Light can carry angular momentum as well as energy and momentum; the transfer of this angular moment...
We outline in general the role and potential areas of application for the use of optical torque in o...
We present a method to measure the optical torque applied to particles of arbitrary shape such as mi...
It is now well known that matter may be trapped by optical fields with high intensity gradients. Onc...
It is now well known that matter may be trapped by optical fields with high intensity gradients. Onc...
It is now well known that matter may be trapped by optical fields with high intensity gradients. Onc...
It is now well known that matter may be trapped by optical fields with high intensity gradients. Onc...
ABSTRACT. Light can carry angular momentum as well as energy and momentum; the transfer of this angu...
The ability to controllably rotate, align, or freely spin microparticles in optical tweezers greatly...
Optical traps are an important tool for research in the field of single molecule biophysics. Recent ...
We present details of the design, construction and testing of a single-beam optical tweezers apparat...
Optical traps are an important tool for research in the field of single molecule biophysics. Recent ...
In recent years there has been an explosive development of interest in the measurement of forces at ...
Several techniques have been proposed and used for the rotation or alignment of microparticles in op...
We describe a way to determine the total angular momentum, both spin and orbital, transferred to a p...
Light can carry angular momentum as well as energy and momentum; the transfer of this angular moment...
We outline in general the role and potential areas of application for the use of optical torque in o...
We present a method to measure the optical torque applied to particles of arbitrary shape such as mi...
It is now well known that matter may be trapped by optical fields with high intensity gradients. Onc...
It is now well known that matter may be trapped by optical fields with high intensity gradients. Onc...
It is now well known that matter may be trapped by optical fields with high intensity gradients. Onc...
It is now well known that matter may be trapped by optical fields with high intensity gradients. Onc...
ABSTRACT. Light can carry angular momentum as well as energy and momentum; the transfer of this angu...
The ability to controllably rotate, align, or freely spin microparticles in optical tweezers greatly...
Optical traps are an important tool for research in the field of single molecule biophysics. Recent ...
We present details of the design, construction and testing of a single-beam optical tweezers apparat...
Optical traps are an important tool for research in the field of single molecule biophysics. Recent ...
In recent years there has been an explosive development of interest in the measurement of forces at ...