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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Voltage-dependent coupling of light into ITO-covered waveguides
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Voltage-dependent coupling of light into ITO-covered waveguides

机译:电压依赖的光耦合到ITO覆盖的波导中

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Indium tin oxide (ITO)-covered waveguides incorporating a grating and immersed in a fluid have been used to study the incoupling of light as a function of a voltage applied between the ITO and an electrode parallel to the waveguide and also immersed in the fluid. The optical set-up is typical for adsorption and binding studies of (bio)chemical material, but the voltage dependence is a new feature. Applied voltages, positive at the ITO surface, shifted the incoupling angle of linearly polarized laser light. Voltages below 1 V are sufficient; above, the effect saturates. dc and ac protocols have been applied. Weak dependence on solution composition and strong asymmetry with respect to the polarity of the applied potential imply that the ITO itself is involved in the effect. It is proposed to use it as a reference or compensation method for standard biosensor applications. It could considerably simplify them, avoiding high-precision goniometers or high-resolution position-sensitive devices for determining waveguide-effective refractive index shifts, and using a simple voltage sweep instead. [References: 13]
机译:覆盖有铟锡氧化物(ITO)的包含光栅并浸没在流体中的波导已被用于研究光的耦合,该耦合是施加在ITO和平行于波导且也浸入流体中的电极之间的电压的函数。光学装置是(生物)化学材料吸附和结合研究的典型设置,但电压依赖性是一个新功能。在ITO表面施加正电压,会改变线性偏振激光的入射角。低于1 V的电压就足够了;以上,效果达到饱和。直流和交流协议已被应用。对溶液成分的依赖性较弱,并且相对于所施加电势的极性而言,存在很大的不对称性,这意味着ITO本身参与了该效应。建议将其用作标准生物传感器应用的参考或补偿方法。它可以大大简化它们,避免使用用于确定波导有效折射率偏移的高精度测角计或高分辨率位置敏感设备,而应使用简单的电压扫描。 [参考:13]

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