论文标题
使用光子计数弥漫性激光雷达直接测量冰川冰的光学性质
Direct measurement of optical properties of glacier ice using a photon-counting diffuse LiDAR
论文作者
论文摘要
夏季在冰冰边缘暴露于冰川冰中的融化冰水的生产是造成很大比例的冰川质量损失。冰川冰产生的融水速率对其物理结构和化学成分特别敏感,这些结构结合起来确定冰川冰的反照率。但是,由于大多数先前的工作都集中在实验室或深芯中制造的冰上,因此近地表冰川冰的光学特性并不是众所周知。在这里,我们演示了一种基于近地面冰川冰中纳米持续激光脉冲的扩散繁殖的测量技术,该激光脉冲能够独立地测量散射和吸收系数,从而可以完整描述控制辐射转移的过程。我们采用光子计数检测器来克服与扩散光学元件相关的高损耗。该仪器是高度便携式且坚固的,使其最适合在远程区域部署。一组对俄勒冈州科利尔冰川的测量值是该技术的演示。这些测量结果可以洞悉近地面冰川冰的物理结构和组成,并开放新的途径,以分析吸收光杂质和冰冻圈的遥感。
The production of meltwater from glacier ice, which is exposed at the margins of land ice during the summer, is responsible for a large proportion of glacier mass loss. The rate of meltwater production from glacier ice is especially sensitive to its physical structure and chemical composition which combine to determine the albedo of glacier ice. However, the optical properties of near-surface glacier ice are not well known since most prior work has focused on ice made in the laboratory or from deep cores. Here, we demonstrate a measurement technique based on diffuse propagation of nanosecond-duration laser pulses in near-surface glacier ice that enables the independent measurement of the scattering and absorption coefficients, allowing for a complete description of the processes governing radiative transfer. We employ a photon-counting detector to overcome the high losses associated with diffuse optics. The instrument is highly portable and rugged, making it optimally suited for deployment in remote regions. A set of measurements taken on Collier Glacier, Oregon, serves as a demonstration of the technique. These measurements provide insight into both physical structure and composition of near-surface glacier ice and open new avenues for the analysis of light-absorbing impurities and remote sensing of the cryosphere.