Optimal angular movement of laser beam in SPR using an embedded controller

M. Rajavelan, S. Ananthi, K. Padmanabhan
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Abstract

This paper proposes and implements the PIC microcontroller based Surface Plasmon resonance analysis of bio molecular interaction. Surface Plasmon resonance [SPR] has becoming an important optical bio-sensing technology in the areas of medical, biological , biochemistry, pollution detection, aircraft and laboratory research. The SPR works on the principle of TIR, that when the stepper motor mounted laser beam moving back and forth is focused on the hypotenuse of the gold coated BK-7 prism at an angle greater than the critical angle, hence the laser beam gets reflected back and SPR is generated outward side of the gold coated surface is measured using LDR. The generation of SPR is measured in terms of Refractive index, the refractive index changes with respect to the applied sample (Dielectric loading). Hence even for a small change in molecular interaction can be found using SPR. The laboratory prototype of PIC microcontroller based SPR was characterized in terms of reflectance and intensity with respect to the incident beam. In the design of instrument PIC 16F73 microcontroller is used to control the laser movement back and forth through stepper motor to increase the fastness and accuracy. This paper explains and demonstrates the importance of PIC microcontroller in the design and control of the instrument.
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利用嵌入式控制器实现SPR中激光束的最佳角度运动
本文提出并实现了基于PIC单片机的表面等离子体共振生物分子相互作用分析。表面等离子体共振(SPR)已成为医学、生物学、生物化学、污染检测、航空和实验室研究等领域重要的光学生物传感技术。SPR是利用TIR原理,将安装有前后运动的步进电机的激光束以大于临界角度聚焦在包金BK-7棱镜的斜边上,使激光束被反射回来,在包金表面外侧用LDR测量SPR。SPR的产生是用折射率来测量的,折射率随所施加样品(介电载荷)的变化而变化。因此,即使是分子相互作用的微小变化也可以用SPR发现。基于PIC微控制器的SPR实验室原型在入射光束的反射率和强度方面进行了表征。在仪器的设计中,采用PIC 16F73单片机通过步进电机控制激光的前后运动,提高了速度和精度。本文阐述并论证了PIC单片机在仪器设计与控制中的重要性。
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