We report on the design, construction, and characterisation of a new class of in-vacuo optical levitation trap optimised for use in high-intensity, high-energy laser interaction experiments. The system uses a focused, vertically propagating continuous wave laser beam to capture and manipulate micro-targets by photon momentum transfer at much longer working distances than commonly used by optical tweezer systems. A high speed (10 kHz) optical imaging and signal acquisition system was implemented for tracking the levitated droplets position and dynamic behaviour under atmospheric and vacuum conditions, with ±5 μm spatial resolution. Optical trapping of 10 ± 4 μm oil droplets in vacuum was demonstrated, over timescales of >1 h at extended dist...
Ultraprecise manipulation of the droplets at the microscale is a promising paradigm for broad implic...
Ultraprecise manipulation of the droplets at the microscale is a promising paradigm for broad implic...
Ultraprecise manipulation of the droplets at the microscale is a promising paradigm for broad implic...
The interaction of sub-picosecond pulses of high intensity laser light with micron, and sub-micron ...
The development of an experimental system in which optical levitation combined with Millikans classi...
The development of an experimental system in which optical levitation combined with Millikans classi...
The development of an experimental system used to investigate charged droplets is presented. The exp...
The development of an experimental system used to investigate charged droplets is presented. The exp...
Laser techniques were applied to an acoustically levitated droplet for remote investigation of the d...
This thesis describes my work on the development of optical trapping techniques for manipulating air...
We describe experiments on the laser levitation of superfluid helium. Liquid drops of 10–20 m diamet...
We discuss the application of optical trapping techniques to droplets, both in air (aerosols) and in...
We discuss the application of optical trapping techniques to droplets, both in air (aerosols) and in...
We report on a Paul-trap system with large access angles that allows positioning of fully isolated m...
Ultraprecise manipulation of the droplets at the microscale is a promising paradigm for broad implic...
Ultraprecise manipulation of the droplets at the microscale is a promising paradigm for broad implic...
Ultraprecise manipulation of the droplets at the microscale is a promising paradigm for broad implic...
Ultraprecise manipulation of the droplets at the microscale is a promising paradigm for broad implic...
The interaction of sub-picosecond pulses of high intensity laser light with micron, and sub-micron ...
The development of an experimental system in which optical levitation combined with Millikans classi...
The development of an experimental system in which optical levitation combined with Millikans classi...
The development of an experimental system used to investigate charged droplets is presented. The exp...
The development of an experimental system used to investigate charged droplets is presented. The exp...
Laser techniques were applied to an acoustically levitated droplet for remote investigation of the d...
This thesis describes my work on the development of optical trapping techniques for manipulating air...
We describe experiments on the laser levitation of superfluid helium. Liquid drops of 10–20 m diamet...
We discuss the application of optical trapping techniques to droplets, both in air (aerosols) and in...
We discuss the application of optical trapping techniques to droplets, both in air (aerosols) and in...
We report on a Paul-trap system with large access angles that allows positioning of fully isolated m...
Ultraprecise manipulation of the droplets at the microscale is a promising paradigm for broad implic...
Ultraprecise manipulation of the droplets at the microscale is a promising paradigm for broad implic...
Ultraprecise manipulation of the droplets at the microscale is a promising paradigm for broad implic...
Ultraprecise manipulation of the droplets at the microscale is a promising paradigm for broad implic...