Direct laser writing of photonic boxes into active layers of biologically produced recombinant fluorescent protein in optical microcavities is demonstrated. Irradiation with laser light above the photobleaching threshold induces photonic confinement potentials on the order of 40 meV. The technique provides high spatial selectivity and enables room-temperature lasing in protein rings, and circular and elliptical pillars with customized beam shapes.<br/
We acknowledge financial support from the European Research Council (ERC StG ABLASE, 640012), the Sc...
Biological cell lasers based on biocompatible fluorescent molecular probes are demonstrated. Instead...
Microscopic lasers represent a promising tool for the development of cutting-edge photonic devices t...
We acknowledge financial support from the European Research Council Starting Grant ABLASE (ERC StG 6...
We demonstrate highly efficient lasing from multiple photonic states in microcavities filled with se...
Since their invention some 50 years ago(1), lasers have made a tremendous impact on modern science a...
Flash photolysis of caged compounds is one of the most powerful approaches to investigate the dynami...
Flash photolysis of caged compounds is one of the most powerful approaches to investigate the dynami...
Fluorescent proteins are indispensable for selective, quantitative visualization of localization, dy...
Fluorescent proteins are indispensable for selective, quantitative visualization of localization, dy...
Direct laser writing is a nanofabrication method used to develop three-dimensional nanostructures wi...
Lab-on-a-chip biological platforms have been intensively developed during the last decade since emer...
This work was supported by the US National Science Foundation (ECCS- 1101947), National Institutes o...
Optical biochips may incorporate both optical and microfluidic components as well as integrated ligh...
We acknowledge financial support from the European Research Council (ERC StG ABLASE, 640012), the Sc...
Biological cell lasers based on biocompatible fluorescent molecular probes are demonstrated. Instead...
Microscopic lasers represent a promising tool for the development of cutting-edge photonic devices t...
We acknowledge financial support from the European Research Council Starting Grant ABLASE (ERC StG 6...
We demonstrate highly efficient lasing from multiple photonic states in microcavities filled with se...
Since their invention some 50 years ago(1), lasers have made a tremendous impact on modern science a...
Flash photolysis of caged compounds is one of the most powerful approaches to investigate the dynami...
Flash photolysis of caged compounds is one of the most powerful approaches to investigate the dynami...
Fluorescent proteins are indispensable for selective, quantitative visualization of localization, dy...
Fluorescent proteins are indispensable for selective, quantitative visualization of localization, dy...
Direct laser writing is a nanofabrication method used to develop three-dimensional nanostructures wi...
Lab-on-a-chip biological platforms have been intensively developed during the last decade since emer...
This work was supported by the US National Science Foundation (ECCS- 1101947), National Institutes o...
Optical biochips may incorporate both optical and microfluidic components as well as integrated ligh...
We acknowledge financial support from the European Research Council (ERC StG ABLASE, 640012), the Sc...
Biological cell lasers based on biocompatible fluorescent molecular probes are demonstrated. Instead...
Microscopic lasers represent a promising tool for the development of cutting-edge photonic devices t...