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Wavelength-scale stationary-wave integrated Fourier-transform spectrometry

机译:波长尺度固定波积分傅里叶变换光谱法

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摘要

Spectrometry is a general physical-analysis approach for investigating light-matter interactions. However, the complex designs of existing spectrometers render them resistant to simplification and miniaturization, both of which are vital for applications in micro- and nanotechnology and which are now undergoing intensive research. Stationary-wave integrated Fourier-transform spectrometry (SWIFTS)-an approach based on direct intensity detection of a standing wave resulting from either reflection ( as in the principle of colour photography by Gabriel Lippmann) or counterpropagative interference phenomenon-is expected to be able to overcome this drawback. Here, we present a SWIFTS-based spectrometer relying on an original optical near-field detection method in which optical nanoprobes are used to sample directly the evanescent standing wave in the waveguide. Combined with integrated optics, we report a way of reducing the volume of the spectrometer to a few hundreds of cubic wavelengths. This is the first attempt, using SWIFTS, to produce a very small integrated one-dimensional spectrometer suitable for applications where microspectrometers are essential.
机译:光谱法是研究光-物质相互作用的通用物理分析方法。但是,现有光谱仪的复杂设计使其无法承受简化和小型化的挑战,这两者对于微技术和纳米技术的应用都是至关重要的,并且正在接受大量研究。固定波集成傅里叶变换光谱法(SWIFTS)-一种基于直接强度检测由于反射(如Gabriel Lippmann的彩色摄影原理)或反向传播干扰现象而产生的驻波的方法,有望能够克服这个缺点。在这里,我们提出了一个基于SWIFTS的光谱仪,该光谱仪依赖于原始的光学近场检测方法,其中使用光学纳米探针直接对波导中的e逝驻波进行采样。结合集成光学器件,我们报告了一种将光谱仪的体积减小到数百立方波长的方法。这是使用SWIFTS进行的首次尝试,以生产适用于必不可少的微型光谱仪的非常小的集成式一维光谱仪。

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