Low loss anti-resonant hollow-core fibers and applications

Low loss anti-resonant hollow-core fibers and applications
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低损耗抗谐振空心光纤及其应用

DOI:
10.1109/icton.2017.8024815
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发表时间:
2017
期刊:
2017 19th International Conference on Transparent Optical Networks (ICTON)
影响因子:
--
通讯作者:
J. Knight
J. Knight
中科院分区:
--
文献类型:
--
作者:
F. Yu;J. Knight

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本文更新了抗谐振空心光纤(AR-HCF)及其应用的研究。此类光纤已被证明可以提供低损耗传输窗口,从而极大地将空芯光纤的传统光谱区域扩展到可见光和中红外区域。单模性能、大模面积、低色散和低非线性使AR-HCF成为科学和工业应用中高功率短脉冲激光传输最有前途的介质。同时,低损耗AR-HCF作为气室提供了数米的相互作用长度,大大降低了受激光-气体相互作用的阈值。几种光泵浦 AR-HCF 气体激光系统已在中红外区域得到演示。光纤增强气体非线性有望在未来提供更多波长转换和新颖光学现象的可能性。
This paper updates the study of anti-resonant hollow-core fibers (AR-HCFs) and their applications. Such fibers have been shown to offer low-loss transmission windows which greatly extend the traditional spectral regions of hollow-core fibers into visible and mid-IR. The single-mode performance, large mode area, low dispersion and low nonlinearity make AR-HCF the most promising medium for high-power short-pulse laser transmission for scientific and industrial applications. Meanwhile, low-loss AR-HCF provides many meters of interaction length as a gas cell and greatly reduces the threshold of the stimulated light-gas interaction. Several optical pumped AR-HCF gas laser systems have been demonstrated in the mid-IR region. Fiber-enhanced gas nonlinearity would be expected to provide more possibilities of wavelength conversion and novel optical phenomena in future.
DOI: 10.3389/fphy.2015.00024
发表时间: 2015-04
影响因子: 3.1
作者:
J. Shephard;A. Urich;R. Carter;P. Jaworski;R. Maier;W. Belardi;F. Yu;W. Wadsworth;J. Knight;D. Hand
通讯作者: J. Shephard;A. Urich;R. Carter;P. Jaworski;R. Maier;W. Belardi;F. Yu;W. Wadsworth;J. Knight;D. Hand
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影响因子: 10.4
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