Polarization dependent properties of graphene oxide-coated tilted fiber Bragg gratings for refractometry

K. Chah, A. Wróblewska, J. Sitek, Hadrien Fasseau, Tianbo Zhu, I. Pasternak, C. Caucheteur
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Abstract

Graphene oxide (GO) thin films fabricated by the vacuum filtration method were deposited on bare tilted fiber Bragg grating for refractometry measurements. Two different layer thicknesses (100 nm and 200nm) were used to prepare the samples. The amplitude spectra of the GO-coated TFBGs (GO-TFBGs) were measured with linearly polarized light for different refractive index values of LiCl solutions (1.3333-1.3342). We show that when polarized light is used, the 200 nm GO-TFBGs achieve similar behavior as plasmonic gold-coated TFBGs (Au-TFBGs). This latter exhibits a characteristic attenuation in the amplitude spectrum when P-polarized light excites a surface plasmon resonance (SPR). This behavior suggests that GO is present as a mix of discontinuous and stratified flakes favorable for plasmon-plasmon hybridization, which can be generated for both P and/or S-polarization of the light.
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折射测量用氧化石墨烯涂层倾斜光纤Bragg光栅的偏振特性
采用真空过滤法制备氧化石墨烯(GO)薄膜,并将其沉积在裸倾斜光纤光栅上进行折射测量。采用两种不同的层厚度(100 nm和200nm)制备样品。用线偏振光测量了不同折射率LiCl溶液(1.3333-1.3342)下GO-TFBGs (GO-TFBGs)的振幅光谱。我们发现,当使用偏振光时,200 nm的GO-TFBGs与等离子体镀金TFBGs (Au-TFBGs)具有相似的行为。当p偏振光激发表面等离子体共振(SPR)时,后者在振幅谱中表现出特征衰减。这种行为表明氧化石墨烯以不连续和分层薄片的混合形式存在,有利于等离子体-等离子体杂交,这可以在光的P和/或s偏振下产生。
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