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All-Fiber Variable Optical Attenuator for High-Power Applications

机译:适用于大功率应用的全光纤可变光衰减器

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We have exploited a high-power-tolerant variable optical attenuator (VOA) based on the fused fiber coupler in the all-fiber structure. A newly designed VOA employs the external modulation by forcing an axial stress in the tapered region of the fused fiber coupler. In the tapered region, the axial stress changes the refractive index of silica glasses resulting in a change in the coupling coefficient of the coupler. In this paper, we explain the principle of the novel device, VOA, and the optimized fabrication of the fused fiber coupler for the attenuation. The changes of the transmission spectrum for the coupler and the optical power spectrum for pump laser diode (LD), whose center wavelength is 1.47μm, versus the axial displacement were verified by experiment. The possibility of the wavelength uniformity less than 1 dB over the range of 1460-1500 nm was also obtained by another coupler under a different fabrication condition. The polarization-dependent loss (PDL) at 1.47μm wavelength was 0.65dB for a maximum displacement of 150μm. The designed device has an attractive feature of another output port of the coupler available as a monitoring tap. The device showed a high attenuation above 34 dB and an insertion loss below 0.15dB. The all-fiber structure can provide less alignment, which in turn provides a high power tolerance. This novel design, moreover, has a simple and cost-effective structure.
机译:我们已经基于全光纤结构中的熔融光纤耦合器开发了一种高功率耐受的可变光衰减器(VOA)。新设计的VOA通过在熔融光纤耦合器的锥形区域中施加轴向应力来采用外部调制。在锥形区域中,轴向应力会改变石英玻璃的折射率,从而导致耦合器的耦合系数发生变化。在本文中,我们解释了新型装置VOA的原理,以及用于衰减的熔融光纤耦合器的优化制造。通过实验验证了中心波长为1.47μm的耦合器的透射光谱和泵浦激光二极管(LD)的光功率谱随轴向位移的变化。在不同的制造条件下,另一个耦合器也可以在1460-1500 nm范围内获得小于1 dB的波长均匀性的可能性。最大位移为150μm时,波长1.47μm处的偏振相关损耗(PDL)为0.65dB。设计的设备具有一个有吸引力的功能,即耦合器的另一个输出端口可用作监视接头。该器件显示出高于34 dB的高衰减和低于0.15 dB的插入损耗。全光纤结构可提供较少的对准,从而提供较高的功率容限。此外,这种新颖的设计具有简单且具有成本效益的结构。

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