• Photonics Research
  • Vol. 8, Issue 10, 1599 (2020)
Kang-Jie Lim1,†, Samuel Kai-Wen Seah1,†, Joash Yong’En Ye1, Wendy Weiying Lim1..., Chu-Perng Seah1, Yunn-Boon Tan1, Suting Tan1, Huiting Lim1, Raghuraman Sidharthan2, Arumugam Rajendra Prasadh1, Chen-Jian Chang2, Seongwoo Yoo2,3,* and Song-Liang Chua1,4,*|Show fewer author(s)
Author Affiliations
  • 1DSO National Laboratories, 118225 Singapore, Singapore
  • 2School of Electrical and Electronic Engineering, Nanyang Technological University, 639798 Singapore, Singapore
  • 3e-mail: seon.yoo@ntu.edu.sg
  • 4e-mail: csonglia@dso.org.sg
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    DOI: 10.1364/PRJ.400755 Cite this Article Set citation alerts
    Kang-Jie Lim, Samuel Kai-Wen Seah, Joash Yong’En Ye, Wendy Weiying Lim, Chu-Perng Seah, Yunn-Boon Tan, Suting Tan, Huiting Lim, Raghuraman Sidharthan, Arumugam Rajendra Prasadh, Chen-Jian Chang, Seongwoo Yoo, Song-Liang Chua, "High absorption large-mode area step-index fiber for tandem-pumped high-brightness high-power lasers," Photonics Res. 8, 1599 (2020) Copy Citation Text show less
    Simulated bend losses of LP01 FM (blue) and LP11 HOM (red) for a 30 μm step-index fiber modeled with 2×10−4 index fluctuations (as fabrication tolerance) in the core and cladding. The solid lines are the predicted performance based on the measured RIP of the fiber reported in this work [see Fig. 2(a)].
    Fig. 1. Simulated bend losses of LP01 FM (blue) and LP11 HOM (red) for a 30 μm step-index fiber modeled with 2×104 index fluctuations (as fabrication tolerance) in the core and cladding. The solid lines are the predicted performance based on the measured RIP of the fiber reported in this work [see Fig. 2(a)].
    Characterization results of the 30/200 low NA double-clad YDF that consists of a Ge-doped cladding and Yb/Al/P-doped cores. (a) 2D RIP, (b) 1D RIP, (c) cladding absorption, and (d) EDX dopant concentration profiles (SEM image of fiber cross section in inset).
    Fig. 2. Characterization results of the 30/200 low NA double-clad YDF that consists of a Ge-doped cladding and Yb/Al/P-doped cores. (a) 2D RIP, (b) 1D RIP, (c) cladding absorption, and (d) EDX dopant concentration profiles (SEM image of fiber cross section in inset).
    (a) All-fiber tandem-pump laser setup (top) with its free-space beam diagnostics layout (bottom). The red solid arrow indicates direction of the laser output beam. (b) Optical performance of the fabricated low NA YDF. Top, the output power and efficiency of the amplified signal at 1065 nm, plotted with respect to the pump power at 1018 nm; middle, the spectra of the seed (left) and the amplified signal (right); bottom, M2 of the laser output before (left) and after (right) amplification.
    Fig. 3. (a) All-fiber tandem-pump laser setup (top) with its free-space beam diagnostics layout (bottom). The red solid arrow indicates direction of the laser output beam. (b) Optical performance of the fabricated low NA YDF. Top, the output power and efficiency of the amplified signal at 1065 nm, plotted with respect to the pump power at 1018 nm; middle, the spectra of the seed (left) and the amplified signal (right); bottom, M2 of the laser output before (left) and after (right) amplification.
    Kang-Jie Lim, Samuel Kai-Wen Seah, Joash Yong’En Ye, Wendy Weiying Lim, Chu-Perng Seah, Yunn-Boon Tan, Suting Tan, Huiting Lim, Raghuraman Sidharthan, Arumugam Rajendra Prasadh, Chen-Jian Chang, Seongwoo Yoo, Song-Liang Chua, "High absorption large-mode area step-index fiber for tandem-pumped high-brightness high-power lasers," Photonics Res. 8, 1599 (2020)
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