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Delivery of high energy Er:YAG pulsed laser light at 2.94µm through a silica hollow core photonic crystal fibre

机译:通过石英空心光子晶体光纤传输2.94µm的高能Er:YAG脉冲激光

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摘要

In this paper the delivery of high power Er:YAG laser pulses through a silica hollow core photonic crystal fibre is demonstrated. The Er:YAG wavelength of 2.94 µm is well beyond the normal transmittance of bulk silica but the unique hollow core guidance allows silica to guide in this regime. We have demonstrated for the first time the ability to deliver high energy pulses through an all-silica fibre at 2.94 µm. These silica fibres are mechanically and chemically robust, biocompatible and have low sensitivity to bending. A maximum pulse energy of 14 mJ at 2.94 µm was delivered through the fibre. This, to our knowledge, is the first time a silica hollow core photonic crystal fibre has been shown to transmit 2.94 µm laser light at a fluence exceeding the thresholds required for modification (e.g. cutting and drilling) of hard biological tissue. Consequently, laser delivery systems based on these fibres have the potential for the realization of novel, minimally-invasive surgical procedures.
机译:在本文中,展示了通过二氧化硅空心光子晶体光纤传输高功率Er:YAG激光脉冲的过程。 Er:YAG波长为2.94 µm,远远超出了大块二氧化硅的正常透射率,但是独特的空心导向使二氧化硅可以在这种情况下进行导向。我们首次展示了通过2.94 µm的全石英纤维传递高能量脉冲的能力。这些二氧化硅纤维具有机械和化学强度,具有生物相容性,并且对弯曲的敏感性低。通过光纤传输的最大脉冲能量为2.94 µm,为14 mJ。据我们所知,这是二氧化硅空心光子晶体光纤第一次显示出能透射2.94 µm激光,其注量超过了对硬生物组织进行修饰(例如切割和钻孔)所需的阈值。因此,基于这些纤维的激光传输系统具有实现新型,微创手术程序的潜力。

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