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Design and prototyping of a multi-segment grating for a broadband and miniaturized spectrometer

机译:用于宽带和小型光谱仪的多段光栅的设计和原型设计

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Compact and broadband spectrometers are used for diagnosis of cancers to distinguish healthy and tumorous tissues at point-of-care locations and remote clinical centers. In this paper, we present a design of a broadband and compact spectrometer based on a three-segment grating which is able to operate from 300 nm to 1700 nm. The spectrometer has a resolution of 6 nm in the ultraviolet-visible-near infrared (UV-VIS-NIR) spectral range and 10 nm in the short wave infrared (SWIR) range. A minimum signal-to-noise ratio (SNR) of 650 in the VIS range and 9300 in the NIR- SWIR range is achieved. Afterwards, the designed three-segment grating was fabricated in-house with ultra-precision diamond tooling followed by replication in poly-methyl-methacrylate (PMMA). The replicated three-segment grating was then experimentally characterized. The experimental results show that the three-segment grating significantly improves the acquired signal level of the spectrometer in the NIR-SWIR spectral region by at least a factor of 2 compared to a corresponding single segment Richardson grating. This result opens a new way of realizing compact and broadband spectrometers which could be integrated with portable devices.
机译:紧凑和宽带光谱仪是用于癌症的诊断,在点照护地点和远程临床中心进行区分健康和肿瘤组织。在本文中,我们提出基于一个三段光栅,其能够操作从300纳米至1700纳米的宽带和紧凑的光谱仪的设计。该质谱仪具有在紫外 - 可见光 - 近红外(UV-VIS-NIR)的一个6纳米的分辨率的光谱范围和红外(SWIR)范围的短波10纳米。在NIR- SWIR范围在VIS范围650和9300的最小信噪比(SNR)的实现。此后,设计的三段光栅的内部,制作与超精密金刚石工具,随后在复制聚甲基丙烯酸甲酯(PMMA)。复制的三段光栅然后实验表征。实验结果表明,该三段显著光栅提高了至少一个与相应的单个段理查森光栅的2因子在NIR-SWIR光谱区光谱仪所获取的信号电平。这一结果打开实现这可能与便携式设备集成紧凑和宽带光谱仪的新途径。

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