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首页> 外文期刊>Optical and quantum electronics >Composite wavelength tunable wedged interference structures with increased free spectral range
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Composite wavelength tunable wedged interference structures with increased free spectral range

机译:具有增加的自由光谱范围的复合波长可调楔形干涉结构

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In the present paper, we propose a compact composite wedge interference structure by combining wedges with different geometry. We use interferential wedges with optical thickness from several micrometers to several hundred micrometers and apex angles of the order of tens microradians. The aim of the conducted study is to prove that such a structure exhibits improved optical properties in comparison to a conventional wedge. We have carried out simulations and experiments with a structure built from two wedges. We have shown that, instead of multiple transmission peaks observed for a single interferential wedge, the composite structure provides selection of a single resonance in transmission within the impact area of a large diameter monochromatic beam and enables wavelength tuning when a small diameter multi-wavelength beam is used. The first property ensures analysis of light beams characterized with a wide spectrum. The second feature allows for increase of the wavelegth tuning range at keeping spectrally narrow transmission peak if the structure is formed by a thin and a thick interferential wedges. Two such structures have been realized using a technique which we have developed. The experiments made with this structures show that the produced transmission peak is narrowed spatially and spectrally at the expense of lower transmission which achieves 50-60% of transmission ensured by the used interferential wedges.
机译:在本文中,我们通过组合具有不同几何形状的楔块,提出了一种紧凑的复合楔块干涉结构。我们使用光学厚度从几微米到几百微米且顶角为几十微弧度的干涉楔形物。进行研究的目的是证明与传统的楔形结构相比,这种结构具有改进的光学性能。我们已经对由两个楔形物构成的结构进行了仿真和实验。我们已经表明,与在单个干涉楔形中观察到的多个透射峰不同,该复合结构提供了在大直径单色光束的影响区域内的透射中选择单个共振的功能,并且在小直径多波长光束的情况下能够进行波长调谐用来。第一个特性确保分析具有广谱特征的光束。如果结构由薄的和厚的干涉楔形物形成,则第二特征允许在保持光谱窄的透射峰的同时增加波长调谐范围。使用我们开发的技术已经实现了两个这样的结构。用这种结构进行的实验表明,所产生的透射峰在空间和光谱上变窄,但以较低的透射率为代价,该透射率达到了所用干涉楔确保的透射率的50-60%。

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