Choi Jin, Kim T H, Kong H J, Lee Jong Ung
Department of Physics and Image Information Research Center, Korea Advanced Institute of Science and Technology, Deajeon, South Korea.
Appl Opt. 2006 May 20;45(15):3430-41. doi: 10.1364/ao.45.003430.
A novel imaging spectrometer can individually control spatial and spectral resolution by using zoom lenses as the foreoptics of the system and a focusing lens. By varying the focal length we can use the focusing lens to change the spatial and spectral dimensions; with the foreoptics, however, we can change only the spatial dimension. Therefore the spectral resolution and the spectral range are affected by the zoom ratio of the focusing lens, whereas the spatial resolution and the field of view are affected by the multiplication of the zoom ratios of the foreoptics and the focusing lens. By properly combining two zoom ratios, we can control the spectral resolution with a fixed spatial resolution or the spatial resolution with a fixed spectral resolution. For an imaging spectrometer with this novel zooming function, we used the lens module method and third-order aberration theory to design an initial four-group zoom system with an external entrance pupil for the focusing lens. Furthermore, using the optical design software CODE V, we obtained an optimized zoom lens with a focal-length range of 50 to 150 mm. Finally, the zoom system with its transmission grating in the Littrow configuration performs satisfactorily as the focusing lens of an imaging spectrometer in the wavelength range 450-900 nm.
一种新型成像光谱仪可通过使用变焦透镜作为系统的前置光学元件和一个聚焦透镜来分别控制空间分辨率和光谱分辨率。通过改变焦距,我们可以利用聚焦透镜来改变空间和光谱维度;然而,对于前置光学元件,我们只能改变空间维度。因此,光谱分辨率和光谱范围受聚焦透镜变焦比的影响,而空间分辨率和视场受前置光学元件与聚焦透镜变焦比之积的影响。通过适当地组合两个变焦比,我们可以在固定空间分辨率的情况下控制光谱分辨率,或者在固定光谱分辨率的情况下控制空间分辨率。对于具有这种新型变焦功能的成像光谱仪,我们采用透镜模块法和三阶像差理论设计了一个用于聚焦透镜的、具有外部入射光瞳的初始四组变焦系统。此外,使用光学设计软件CODE V,我们获得了一个焦距范围为50至150毫米的优化变焦透镜。最后,带有处于利特罗配置的透射光栅的变焦系统,在450 - 900纳米波长范围内作为成像光谱仪的聚焦透镜表现令人满意。