Cull E C, Gehm M E, Brady D J, Hsieh C R, Momtahan O, Adibi A
Duke University Fitzpatrick Institute for Photonics, Durham, NC 27708, USA.
Appl Opt. 2007 Jan 20;46(3):365-74. doi: 10.1364/ao.46.000365.
We replace the traditional grating used in a dispersive spectrometer with a multiplex holographic grating to increase the spectral range sensed by the instrument. The multiplexed grating allows us to measure three different, overlapping spectral bands on a color digital focal plane. The detector's broadband color filters, along with a computational inversion algorithm, let us disambiguate measurements made from the three bands. The overlapping spectral bands allow us to measure a greater spectral bandwidth than a traditional spectrometer with the same sized detector. Additionally, our spectrometer uses a static coded aperture mask in the place of a slit. The aperture mask allows increased light throughput, offsetting the photon loss at the broadband filters. We present our proof-of-concept dispersion multiplexing spectrometer design with experimental measurements to verify its operation.
我们用多路复用全息光栅取代了色散光谱仪中使用的传统光栅,以扩大仪器所感测的光谱范围。多路复用光栅使我们能够在彩色数字焦平面上测量三个不同的重叠光谱带。探测器的宽带滤色片与一种计算反演算法一起,让我们能够区分从这三个波段进行的测量。与具有相同尺寸探测器的传统光谱仪相比,重叠光谱带使我们能够测量更大的光谱带宽。此外,我们的光谱仪使用静态编码孔径掩膜代替狭缝。孔径掩膜可提高光通量,抵消宽带滤光片处的光子损失。我们展示了我们的概念验证色散复用光谱仪设计,并通过实验测量来验证其运行情况。