| Literature DB >> 24941312 |
Yang Liu1, Lei Shi, Xinbiao Xu, Ping Zhao, Zheqi Wang, Shengli Pu, Xinliang Zhang.
Abstract
An all-optical tunable optofluidic ring resonator (OFRR) is proposed and experimentally demonstrated. The all-optical control of a silica microresonator is highly attractive, but it is difficult to realize because of the relatively weak Kerr effect and the absence of a plasma dispersion effect of silica. Here, we infuse a silica microcapillary-based optofluidic ring resonator with a magnetic fluid, into which pump light is injected by a fiber taper. Iron oxide nanoparticles dispersed in the magnetic fluid produce a strong pump light absorption, and this leads to a resonance shift of the silica microresonator due to the photothermal effect. To the best of our knowledge, this is the first scheme for all-optical tuning of an OFRR. A tuning sensitivity of up to 0.15 nm mW(-1) and a tuning range of 3.3 nm are achieved. With such excellent performance, the magnetic-fluid-filled OFRR has great potential in filtering, sensing, and signal processing applications.Entities:
Year: 2014 PMID: 24941312 DOI: 10.1039/c4lc00236a
Source DB: PubMed Journal: Lab Chip ISSN: 1473-0189 Impact factor: 6.799