We demonstrate that optical tweezers can be used to control and characterize the coagulation and mixing state of aerosols. Liquid aerosol droplets of 2-14 mu m in diameter are optically trapped and characterized by spontaneous and stimulated Raman scatterings, which together provide a unique signature of droplet size and composition. From the conventional bright field image, the size of the trapped droplet can be estimated and compared with that determined from stimulated Raman scattering, and the motion of the particle within the trapping plane can be recorded. A maximum of four droplets can be manipulated in tandem by forming multiple optical traps through rapid beam steering. The coagulation of two droplets can be studied directly by con...
We demonstrate the use of holographic optical tweezers for trapping particles in air, specifically a...
In this contribution we present experiments used to control and characterize single optically trappe...
We discuss the application of optical trapping techniques to droplets, both in air (aerosols) and in...
We demonstrate that optical tweezers can be used to control and characterize the coagulation and mix...
In the following paper, we discuss new methods to trap and manipulate airborne liquid aerosol drople...
Arrays of optically tweezed aerosol droplets, each of sub-picolitre volume, are manipulated by holog...
Arrays of optically tweezed aerosol droplets, each of sub-picolitre volume, are manipulated by holog...
In the following paper, we discuss new methods to trap and manipulate airborne liquid aerosol drople...
In the following paper, we discuss new methods to trap and manipulate airborne liquid aerosol drople...
In the following paper, we discuss new methods to trap and manipulate airborne liquid aerosol drople...
Bistability in the axial trapping position of aqueous aerosol droplets has been observed for the fir...
Bistability in the axial trapping position of aqueous aerosol droplets has been observed for the fir...
Arrays of optically tweezed aerosol droplets, each of sub-picolitre volume, are manipulated by holog...
In the following paper, we discuss new methods to trap and manipulate airborne liquid aerosol drople...
This thesis describes my work on the development of optical trapping techniques for manipulating air...
We demonstrate the use of holographic optical tweezers for trapping particles in air, specifically a...
In this contribution we present experiments used to control and characterize single optically trappe...
We discuss the application of optical trapping techniques to droplets, both in air (aerosols) and in...
We demonstrate that optical tweezers can be used to control and characterize the coagulation and mix...
In the following paper, we discuss new methods to trap and manipulate airborne liquid aerosol drople...
Arrays of optically tweezed aerosol droplets, each of sub-picolitre volume, are manipulated by holog...
Arrays of optically tweezed aerosol droplets, each of sub-picolitre volume, are manipulated by holog...
In the following paper, we discuss new methods to trap and manipulate airborne liquid aerosol drople...
In the following paper, we discuss new methods to trap and manipulate airborne liquid aerosol drople...
In the following paper, we discuss new methods to trap and manipulate airborne liquid aerosol drople...
Bistability in the axial trapping position of aqueous aerosol droplets has been observed for the fir...
Bistability in the axial trapping position of aqueous aerosol droplets has been observed for the fir...
Arrays of optically tweezed aerosol droplets, each of sub-picolitre volume, are manipulated by holog...
In the following paper, we discuss new methods to trap and manipulate airborne liquid aerosol drople...
This thesis describes my work on the development of optical trapping techniques for manipulating air...
We demonstrate the use of holographic optical tweezers for trapping particles in air, specifically a...
In this contribution we present experiments used to control and characterize single optically trappe...
We discuss the application of optical trapping techniques to droplets, both in air (aerosols) and in...