We demonstrate a biocompatible optofluidic laser with an edible liquid laser gain medium, made of riboflavin dissolved in water. The proposed laser platform is based on a pulled-glass-capillary optofluidic ring resonator (OFRR) with a high Q-factor, resulting in a lasing threshold comparable to that of conventional organic dye lasers that are mostly harmful, despite the relatively low quantum yield of the riboflavin. The proposed biocompatible laser can be realized by not only a capillary OFRR, but also by an optical-fiber-based OFRR that offers improved mechanical stability, and is promising technology for application to in vivo bio-sensing
A biolaser utilizes biological materials as part of its gain medium and/or part of its cavity. It ca...
Biological vision systems such as animals or insects eye exhibit simplicity and multiplicity of oper...
Optofluidic microcavities are integrated elements of microfluidics that can be explored for a large ...
The optofluidic laser is an emerging technology that integrates the microcavity, microfluidic channe...
We report the realization and characterization of an optofluidic microlaser based on a Fabry-Perot r...
We designed, fabricated, and characterized a monolithically integrated optofluidic ring resonator la...
Author name used in this publication: Y. ChenAuthor name used in this publication: L. LeiAuthor name...
We achieved two types of laser emissions from aqueous quantum dots (QDs) using the same high-Q-facto...
A compact and portable optofluidic microresonator has been fabricated and characterized. It is based...
The first detailed optical characterization of any biological laser, providing spectral, temporal, t...
In recent years, the study of stimulated emission from and by biological systems has gained wide spr...
We developed chip-scale remote refractive index sensors based on Rhodamine 6G (R6G)-doped polymer mi...
Fluorescent proteins are indispensable for selective, quantitative visualization of localization, dy...
The increasing collaboration between physicists and biologists in recent years has led to a series ...
Fluorescent proteins are indispensable for selective, quantitative visualization of localization, dy...
A biolaser utilizes biological materials as part of its gain medium and/or part of its cavity. It ca...
Biological vision systems such as animals or insects eye exhibit simplicity and multiplicity of oper...
Optofluidic microcavities are integrated elements of microfluidics that can be explored for a large ...
The optofluidic laser is an emerging technology that integrates the microcavity, microfluidic channe...
We report the realization and characterization of an optofluidic microlaser based on a Fabry-Perot r...
We designed, fabricated, and characterized a monolithically integrated optofluidic ring resonator la...
Author name used in this publication: Y. ChenAuthor name used in this publication: L. LeiAuthor name...
We achieved two types of laser emissions from aqueous quantum dots (QDs) using the same high-Q-facto...
A compact and portable optofluidic microresonator has been fabricated and characterized. It is based...
The first detailed optical characterization of any biological laser, providing spectral, temporal, t...
In recent years, the study of stimulated emission from and by biological systems has gained wide spr...
We developed chip-scale remote refractive index sensors based on Rhodamine 6G (R6G)-doped polymer mi...
Fluorescent proteins are indispensable for selective, quantitative visualization of localization, dy...
The increasing collaboration between physicists and biologists in recent years has led to a series ...
Fluorescent proteins are indispensable for selective, quantitative visualization of localization, dy...
A biolaser utilizes biological materials as part of its gain medium and/or part of its cavity. It ca...
Biological vision systems such as animals or insects eye exhibit simplicity and multiplicity of oper...
Optofluidic microcavities are integrated elements of microfluidics that can be explored for a large ...