A Low-Threshold, High-Efficiency Microfluidic Waveguide Laser
Article 2005 en
Authors
DV
Dmitri Vezenov
BM
Brian T. Mayers
RC
Richard Conroy
Abstract
1 min read
This communication describes a long (1 cm), laser-pumped, liquid core−liquid cladding (L2) waveguide laser. This device provides a simple, high intensity, tunable light source for microfludic applications. Using a core solution of 2 mM rhodamine 640 perchlorate, optically pumped by a frequency-doubled Nd:YAG laser, we found that the threshold for lasing was as low as 22 μJ (16-ns pulse length) and had a slope efficiency up to 20%. The output wavelength was tunable over a 20-nm range by changing the ratio of solvent components (dimethyl sulfoxide and methanol) in the liquid core.
Garry W. Mudd, Simon A. Svatek, Lee Hague, O. Makarovsky, Z. R. Kudrynskyi, Christopher J. Mellor, Peter H. Beton, L. Eaves, Konstantin ‘kostya’ Novoselov, Z. D. Kovalyuk, Evgeny E. Vdovin, Alexander J. Marsden, Neil R. Wilson, A. Patanè
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