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THIN FILM TECHNOLOGY BASED MICRO-FOURIER SPECTROMETER

机译:基于薄膜技术的微傅里叶光谱仪

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A novel Fourier spectrometer using thin film technology was developed. The spectrometer based on a semi transparent thin film detector in combination with a tunable micro machined mirror. The semi transparent detector is introduced into a standing wave created in front of the mirror to sample the profile of the standing wave. Varying the position of the mirror results in a shift of the phase of the standing waves and thus in a change of the optical generation profile within the semi transparent detector. The active region of the sensor (thickness + absorption) is thinner than the wavelength of the incoming light, so that the modulation of the intensity results in a modulation of the overall photocurrent. The spectral information of the incoming light can be determined by the Fourier transformation of the sensor signal. Based on the linear arrangement of the sensor and the mirror, the spectrometer facilitates the realization of 1D and 2D arrays of spectrometers combining medium range spectral resolution with medium range spatial resolution. The novel device is filling the gap between solid-state camera technology with only three-color channels (red, green and blue) but high spatial resolution on one hand and precision spectrometers with high spectral resolution but no spatial resolution on the other hand. An analytical optical model of the spectrometer was applied to evaluate different detector concepts. The model was used to study the performance of different device designs regarding the spectral resolution of the spectrometer, the spectral range and the linearity of the response. The calculations will be compared with experimental results of semi transparent amorphous silicon detectors.
机译:开发了一种新型傅里叶光谱仪,采用薄膜技术。基于半透明薄膜检测器的光谱仪与可调谐微加工镜相结合。半透明检测器被引入到镜子前面产生的常设波以采样驻波的轮廓。改变镜子的位置导致驻波的相位偏移,从而在半透明检测器内的光学产生曲线的变化中的偏移。传感器(厚度+吸收)的有源区比进入光的波长薄,因此强度的调制导致整体光电流的调节。进入光的光谱信息可以通过传感器信号的傅里叶变换来确定。基于传感器和镜子的线性布置,光谱仪促进了与中等范围空间分辨率组合中等范围光谱分辨率的光谱仪的1D和2D阵列。新颖的设备正在填充固态相机技术之间的间隙,只有三色通道(红色,绿色和蓝色),但一方面的空间分辨率高,具有高光谱分辨率,但另一方面没有空间分辨率。应用光谱仪的分析光学模型来评估不同的探测器概念。该模型用于研究不同器件设计关于光谱仪的光谱分辨率,光谱范围和响应线性的性能。将计算与半透明非晶硅探测器的实验结果进行比较。

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