We introduce tunable optofluidic microlasers based on optically stretched or thermally modified, dye-doped emulsion droplets of liquid crystals (LC) confined in a dual-beam optical trap. Droplets were created in microfluidic chips or by shaking. Optically trapped microdroplets emulsified in water and stained with fluorescent dye act as an active ultrahigh-Q optical resonant cavity hosting whispering gallery modes (WGMs). Tuning of the laser emission wavelength was achieved by a controlled deformation of the droplet shape using light-induced forces generated by dual-beam optical trap and by thermal changing of the order in the LC
We report on a novel principle of actuation of micrometer-sized liquid crystal droplets. It is based...
Here we report a tunable Meta-Liquid-Crystal based on liquid metal droplet, the optical properties o...
We propose and demonstrate an optical trapping of a liquid droplet and its application based on an a...
We introduce tunable optofluidic microlasers based on optically stretched, dye-doped emulsion drople...
We introduce tunable optofluidic microlasers based on optically stretched, dye-doped emulsion drople...
Emulsion droplets of liquid crystals (LC) suspended in water and labeled with a suitable fluorescent...
We created a system for concurrent optical trapping, laser excitation and spectroscopy of liquid cry...
We introduce tunable optofluidic microlasers based on active optical resonant cavities formed by opt...
We introduce a portable, all-liquid microlaser based on optically pumped dye-doped emulsion microdro...
Optical microcavities are important for both fundamental studies of light-matter interaction and app...
Optical whispering gallery modes (WGMs) were observed in elastic scattering spectra recorded from oi...
In the last decade, much interest has grown around the possibility to use liquid-crystal droplets as...
Microscopic lasers represent a promising tool for the development of cutting-edge photonic devices t...
Glycerol/water microdroplets take almost spherical shapes when standing on a superhydrophobic surfac...
A design of microfluidic devices is presented to integrate single-mode, liquid-core waveguides with ...
We report on a novel principle of actuation of micrometer-sized liquid crystal droplets. It is based...
Here we report a tunable Meta-Liquid-Crystal based on liquid metal droplet, the optical properties o...
We propose and demonstrate an optical trapping of a liquid droplet and its application based on an a...
We introduce tunable optofluidic microlasers based on optically stretched, dye-doped emulsion drople...
We introduce tunable optofluidic microlasers based on optically stretched, dye-doped emulsion drople...
Emulsion droplets of liquid crystals (LC) suspended in water and labeled with a suitable fluorescent...
We created a system for concurrent optical trapping, laser excitation and spectroscopy of liquid cry...
We introduce tunable optofluidic microlasers based on active optical resonant cavities formed by opt...
We introduce a portable, all-liquid microlaser based on optically pumped dye-doped emulsion microdro...
Optical microcavities are important for both fundamental studies of light-matter interaction and app...
Optical whispering gallery modes (WGMs) were observed in elastic scattering spectra recorded from oi...
In the last decade, much interest has grown around the possibility to use liquid-crystal droplets as...
Microscopic lasers represent a promising tool for the development of cutting-edge photonic devices t...
Glycerol/water microdroplets take almost spherical shapes when standing on a superhydrophobic surfac...
A design of microfluidic devices is presented to integrate single-mode, liquid-core waveguides with ...
We report on a novel principle of actuation of micrometer-sized liquid crystal droplets. It is based...
Here we report a tunable Meta-Liquid-Crystal based on liquid metal droplet, the optical properties o...
We propose and demonstrate an optical trapping of a liquid droplet and its application based on an a...