Mid-infrared Raman-soliton continuum pumped by a nanotube-mode-locked sub-picosecond Tm-doped MOPFA.

Mid-infrared Raman-soliton continuum pumped by a nanotube-mode-locked sub-picosecond Tm-doped MOPFA.
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DOI:
10.1364/oe.21.023261
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发表时间:
2013-10
期刊:
影响因子:
3.8
通讯作者:
M. Zhang;E. Kelleher;T. Runcorn;V. Mashinsky;O. Medvedkov;E. Dianov;D. Popa;S. Milana;T. Hasan-T.-H
M. Zhang;E. Kelleher;T. Runcorn;V. Mashinsky;O. Medvedkov;E. Dianov;D. Popa;S. Milana;T. Hasan-T.-H
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
M. Zhang;E. Kelleher;T. Runcorn;V. Mashinsky;O. Medvedkov;E. Dianov;D. Popa;S. Milana;T. Hasan-T.-H

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我们展示了在高度掺锗的二氧化硅包层光纤中从1.9 μ m延伸到3 μm的中红外拉曼孤子连续谱,由纳米管锁模掺铥光纤系统泵浦,提供1.95 μm的12 kW亚皮秒脉冲。这种简单而坚固的光源覆盖了大气传输窗口的一部分。
We demonstrate a mid-infrared Raman-soliton continuum extending from 1.9 to 3 µm in a highly germanium-doped silica-clad fiber, pumped by a nanotube mode-locked thulium-doped fiber system, delivering 12 kW sub-picosecond pulses at 1.95 µm. This simple and robust source of light covers a portion of the atmospheric transmission window.