AI Article Synopsis

  • Recent advancements in Yb-doped silicate fibers have enabled anti-Stokes-fluorescence cooling, helping mitigate thermal issues in fiber lasers and amplifiers.
  • A new silica fiber with a core rich in aluminum and phosphorus achieved a temperature drop of -0.25 K using 0.5 W of power, setting new records for cooling efficiency (3.3% at low pump power and 2.8% at peak cooling).
  • The study found a critical quenching concentration of 79 wt.% and a background absorption loss of 15 dB/km, with an average Yb concentration of 4.2 wt.%, marking it among the best in silica glass.

Article Abstract

Recent progress in the fabrication of Yb-doped silicate fibers with low concentration quenching and low background absorption loss has led to the demonstration of anti-Stokes-fluorescence cooling in several aluminosilicate compositions. This breakthrough is critical to combat deleterious thermal effects due to the quantum defect in fiber lasers and amplifiers. Since cooling efficiencies remain low (1-2.7%), it is paramount to engineer compositions that improve this metric. We report a silica fiber with a core glass heavily doped with aluminum and phosphorus that sets, to our knowledge, a few new records. This few-mode fiber (16-µm core) was cooled in air by -0.25 K from room temperature with ∼0.5 W of 1040-nm power. The measured cooling efficiency is 3.3% at low pump power and 2.8% at the power that produced maximum cooling. The critical quenching concentration inferred from the measured dependence of cooling on pump power and careful calibration of the pump absorption and saturation is 79 wt.%. The inferred background absorption loss is 15 dB/km. Together with the fiber's average Yb concentration of 4.2 wt.%, these metrics rank among the best reported in a silica glass.

Download full-text PDF

Source
http://dx.doi.org/10.1364/OL.533925DOI Listing

Publication Analysis

Top Keywords

background absorption
8
absorption loss
8
pump power
8
cooling
5
optical cooling
4
cooling yb-doped
4
yb-doped alumino-phosphosilicate
4
fiber
4
alumino-phosphosilicate fiber
4
fiber air
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!