Goyal Anish, Myers Travis, Wang Christine A, Kelly Michael, Tyrrell Brian, Gokden B, Sanchez Antonio, Turner George, Capasso Federico
Opt Express. 2014 Jun 16;22(12):14392-401. doi: 10.1364/OE.22.014392.
We demonstrate active hyperspectral imaging using a quantum-cascade laser (QCL) array as the illumination source and a digital-pixel focal-plane-array (DFPA) camera as the receiver. The multi-wavelength QCL array used in this work comprises 15 individually addressable QCLs in which the beams from all lasers are spatially overlapped using wavelength beam combining (WBC). The DFPA camera was configured to integrate the laser light reflected from the sample and to perform on-chip subtraction of the passive thermal background. A 27-frame hyperspectral image was acquired of a liquid contaminant on a diffuse gold surface at a range of 5 meters. The measured spectral reflectance closely matches the calculated reflectance. Furthermore, the high-speed capabilities of the system were demonstrated by capturing differential reflectance images of sand and KClO particles that were moving at speeds of up to 10 m/s.
我们展示了一种主动式高光谱成像技术,该技术使用量子级联激光器(QCL)阵列作为照明源,数字像素焦平面阵列(DFPA)相机作为接收器。本工作中使用的多波长QCL阵列由15个可单独寻址的QCL组成,其中所有激光器发出的光束通过波长光束合成(WBC)在空间上重叠。DFPA相机被配置为对从样品反射的激光进行积分,并在芯片上对被动热背景进行减法运算。在5米的距离处,采集了漫反射金表面上液体污染物的27帧高光谱图像。测量得到的光谱反射率与计算得到的值紧密匹配。此外,通过捕获以高达10米/秒速度移动的沙子和KClO颗粒的差分反射率图像,展示了该系统的高速性能。