The ability to observe at tiny length scales has enabled key advances across the physical and life sciences. Much of what we know about the structure of cells and tissues comes from experiments on the micron length scale, enabled by new microscopy techniques. Modern manufacturing is increasingly concerned with materials that are structured on the nanometre scale, and devices which have ever-smaller features. Manipulating and measuring microscopic objects is a problem common to fields as diverse as microfabrication and cell biology, and it is these challenges that my doctoral studies have addressed. Tiny sizes mean tiny forces; so small that the light from a laser can be used to propel objects. Optical tweezers, a technique pioneered some t...
Holographic optical tweezers (HOT) hold great promise for many applications in biophotonics, allowin...
Holographic optical tweezers (HOT) hold great promise for many applications in biophotonics, allowin...
Holographic optical tweezers (HOT) hold great promise for many applications in biophotonics, allowin...
The ability to observe at tiny length scales has enabled key advances across the physical and life s...
For more than three centuries we have been watching and studying microscopic phenomena behind a micr...
SINCE their invention, optical tweezers have found a host of applications, primarily as micro- manip...
Optical tweezers are a sensitive position and force transducer widely employed in physics and biolog...
Optical tweezers are a sensitive position and force transducer widely employed in physics and biolog...
Since the invention of optical tweezers, optical manipulation has advanced significantly in scientif...
Optical tweezers are a sensitive position and force transducer widely employed in physics and biolog...
Force measurement in an interactive 3D micromanipulation system can allow the user to make delicate ...
This thesis mainly describes experiments carried out to advance the techniques of manipulating diele...
We present a three-dimensional (3D) imaging technique for the fast tracking of microscopic objects i...
The work presented in this thesis explores new multi-disciplinary applications of optical tweezers i...
The possibility of measuring microscopic forces down to the femtonewton range has opened new possibi...
Holographic optical tweezers (HOT) hold great promise for many applications in biophotonics, allowin...
Holographic optical tweezers (HOT) hold great promise for many applications in biophotonics, allowin...
Holographic optical tweezers (HOT) hold great promise for many applications in biophotonics, allowin...
The ability to observe at tiny length scales has enabled key advances across the physical and life s...
For more than three centuries we have been watching and studying microscopic phenomena behind a micr...
SINCE their invention, optical tweezers have found a host of applications, primarily as micro- manip...
Optical tweezers are a sensitive position and force transducer widely employed in physics and biolog...
Optical tweezers are a sensitive position and force transducer widely employed in physics and biolog...
Since the invention of optical tweezers, optical manipulation has advanced significantly in scientif...
Optical tweezers are a sensitive position and force transducer widely employed in physics and biolog...
Force measurement in an interactive 3D micromanipulation system can allow the user to make delicate ...
This thesis mainly describes experiments carried out to advance the techniques of manipulating diele...
We present a three-dimensional (3D) imaging technique for the fast tracking of microscopic objects i...
The work presented in this thesis explores new multi-disciplinary applications of optical tweezers i...
The possibility of measuring microscopic forces down to the femtonewton range has opened new possibi...
Holographic optical tweezers (HOT) hold great promise for many applications in biophotonics, allowin...
Holographic optical tweezers (HOT) hold great promise for many applications in biophotonics, allowin...
Holographic optical tweezers (HOT) hold great promise for many applications in biophotonics, allowin...