| Literature DB >> 27110037 |
Xiaomin Liu1, Ask S Svane1, Jesper Lægsgaard1, Haohua Tu2, Stephen A Boppart2, Dmitry Turchinovich3.
Abstract
We review the recent developments in the field of ultrafast Cherenkov fiber lasers. Two essential properties of such laser systems - broad wavelength tunability and high efficiency of Cherenkov radiation wavelength conversion are discussed. The exceptional performance of the Cherenkov fiber laser systems are highlighted - dependent on the realization scheme, the Cherenkov lasers can generate the femtosecond output tunable across the entire visible and even the UV range, and for certain designs more than 40 % conversion efficiency from the pump to Cherenkov signal can be achieved. The femtosecond Cherenkov laser with all-fiber architecture is presented and discussed. Operating in the visible range, it delivers 100-200 fs wavelength-tunable pulses with multimilliwatt output power and exceptionally low noise figure an order of magnitude lower than the traditional wavelength tunable supercontinuum-based femtosecond sources. The applications for Cherenkov laser systems in practical biophotonics and biomedical applications, such as bio-imaging and microscopy, are discussed.Entities:
Keywords: photonic crystal fibers; ultrafast lasers; ultrafast nonlinear optics
Year: 2015 PMID: 27110037 PMCID: PMC4839584 DOI: 10.1088/0022-3727/49/2/023001
Source DB: PubMed Journal: J Phys D Appl Phys ISSN: 0022-3727 Impact factor: 3.207