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Comment on the reported fiber attenuations in the visible regime in 'Fabrication of glass photonic crystal fibers with a die-cast process'

机译:在“通过压铸工艺制造玻璃光子晶体光纤”中对可见光中光纤衰减的评论

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We comment on the recent paper by Zhou et al. [Appl. Opt. 45, 4433 (2006)], in which transmission losses of 0.2-0.3 dB/m were claimed across the wavelength range 420-900 nm in a high-index (n_(d) velence 1.80518 at 587.6 nm) SF6 glass-based photonic crystal fiber fabricated by novel die-cast technique. If confirmed, these losses are at least 1 order of magnitude lower than previous reported losses of SF6 photonic crystal fibers from other fabrication approaches. Here we present a statistic survey on the relationship between the refractive index and the bulk material attenuation, based on a large number of commercial Schott optical glasses with the n_(d) ranging between 1.40 and 2.05. It shows that the loss of a high-index (n_(d) velence 1.80) glass optical fiber should be at the levels of 10-50 dB/m at 420 nm and 1-10 dB/m at 500 nm, respectively. Moreover, the material attenuation of such a high-index glass fiber should intrinsically show a large decay, from 10-50 dB/m at 420 nm to the level of 1 dB/m at 700 nm, which arises from the tail on the UV absorption edge of the high-index glass extending to the visible region. Therefore, we conclude that: (1) the low loss of 0.2-0.3 dB/m reported in the cited paper is abnormally one or two magnitudes lower than the material attenuation that a high-index (n_(d) velence 1.80) glass optical fiber should have in the range between 420 and 500 nm and that (2) the flat loss curve between 420 and 700 nm in the cited paper deviates greatly from the intrinsic behavior of a high-index (n_(d) velence 1.80) glass fiber.
机译:我们对Zhou等人的最新论文发表评论。 [应用选择。 45,4433(2006)],其中在基于SF6玻璃的高折射率(n_(d)声速1.80518在587.6 nm下)的整个波长范围420-900 nm范围内,传输损耗为0.2-0.3 dB / m。新型压铸技术制造的晶体纤维。如果得到确认,这些损失比先前报道的其他制造方法中的SF6光子晶体光纤损失至少低1个数量级。在此,我们基于n_(d)在1.40到2.05之间的大量商用Schott光学眼镜,对折射率与松散材料衰减之间的关系进行了统计调查。它表明高折射率(n_(d)velence 1.80)玻璃光纤的损耗应分别在420 nm和10 nm在500 nm处为10-50 dB / m。此外,这种高折射率玻璃纤维的材料衰减本质上应显示出较大的衰减,从420 nm处的10-50 dB / m到700 nm处的1 dB / m的衰减,这是由UV的尾部引起的高折射率玻璃的吸收边缘延伸到可见光区域。因此,我们得出以下结论:(1)引用的论文中所报告的0.2-0.3 dB / m的低损耗比高折射率(n_(d)费率1.80)玻璃光学材料的材料衰减低一到两个数量级。光纤应在420和500 nm之间的范围内,并且(2)引用论文中420和700 nm之间的平坦损耗曲线与高折射率(n_(d)velence 1.80)玻璃纤维的固有特性有很大差异。

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