Published in

Optica, Optics Letters, 21(45), p. 5978, 2020

DOI: 10.1364/ol.404303

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Pneumatically tunable optofluidic DFB dye laser using corrugated sidewalls

Journal article published in 2020 by Tyler Sano, Jennifer Black, Sarah Mitchell, Han Zhang ORCID, Holger Schmidt
This paper was not found in any repository, but could be made available legally by the author.
This paper was not found in any repository, but could be made available legally by the author.

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Abstract

Polydimethylsiloxane-based optofluidics provides a powerful platform for a complete analytical lab-on-chip. Here, we report on a novel on-chip laser source that can be integrated with sample preparation and analysis functions. A corrugated sidewall structure is integrated into a microfluidic channel to form a distributed feedback (DFB) laser using rhodamine 6G dissolved in an ethylene glycol and water solution. Lasing is demonstrated with a threshold pump power of 87.9 µW, corresponding to a pump intensity of 52.7 m W / c m 2 . Laser threshold and output power are optimized with respect to rhodamine 6G concentration and core index and found to be in good agreement with a rate equation model. Additionally, the laser can be switched on and off mechanically using a pneumatic cell inducing positive pressure on the grating.