Martinez Amos, Fuse Kazuyuki, Yamashita Shinji
Department of Electronic Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.
Opt Express. 2013 Feb 25;21(4):4665-70. doi: 10.1364/OE.21.004665.
Due to their broadband saturable absorption and fast response, carbon nanotubes have proven to be an excellent material for the modelocking of fiber lasers and have become a promising device for the implementation of novel laser configurations. However, it is imperative to address the issue of their long-term reliability under intense optical pulses before they can be exploited in widespread commercial applications. In this work, we study how carbon nanotubes degrade due to oxidation when exposed to high-intensity continuous-wave light and we demonstrate that by sealing the carbon nanotubes in a nitrogen gas, the damage threshold can be increased by over one order of magnitude. We then monitor over 24 hours the performance of the carbon nanotube saturable absorbers as the passive modelocking device of an erbium-doped fiber laser with intracavity powers ranging from 5 mW to 316 mW. We observe that when the carbon nanotubes are sealed in nitrogen environment, oxidation can be efficiently prevented and the laser can operate without any deterioration at intracavity powers higher than 300 mW. However, in the case where carbon nanotubes are unprotected (i.e. those directly exposed to the air in the environment), the nanotubes start to deteriorate at intracavity powers lower than 50 mW.
由于具有宽带饱和吸收特性和快速响应能力,碳纳米管已被证明是用于光纤激光器锁模的优异材料,并已成为实现新型激光配置的一种有前景的器件。然而,在它们能够被广泛应用于商业用途之前,必须解决其在强光学脉冲下的长期可靠性问题。在这项工作中,我们研究了碳纳米管在暴露于高强度连续波光时如何因氧化而降解,并且我们证明通过将碳纳米管密封在氮气中,损伤阈值可以提高一个多数量级。然后,我们监测作为掺铒光纤激光器被动锁模器件的碳纳米管饱和吸收体在超过24小时内的性能,腔内功率范围为5毫瓦至316毫瓦。我们观察到,当碳纳米管密封在氮气环境中时,可以有效防止氧化,并且激光器在腔内功率高于300毫瓦时能够无任何劣化地运行。然而,在碳纳米管未受保护的情况下(即直接暴露于环境空气中的那些),纳米管在腔内功率低于50毫瓦时就开始劣化。