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Fabrication of resonant optical waveguide biosensors using electron gun depositions.

机译:使用电子枪沉积物制造谐振光波导生物传感器。

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Biosensors are used to connect the chemical and physical worlds through the use of a transducer, allowing for quick detection of numerous biological agents. A new biosensor being developed, the resonant optical waveguide biosensor, uses power transfer between two optical waveguides to detect the presence of an antigen. The condition for power transfer is extremely sensitive to changes in index of refraction and allows the biosensor to have a high sensitivity to the antigen presence. Given the high sensitivity of the device, a high degree of accuracy in index of refraction and thickness is required from the fabrication process.; Fabrication of the biosensor transducer was performed from Electron Beam Physical Vapor Depositions. This thesis outlines the development of the protocol for the fabrication process and discusses the improvements made to the deposited films as new capabilities were added to the evaporation chamber such as substrate heat and Ion Beam Assisted Deposition (IBAD). Also discussed is the numerous characterization techniques used to optimize the fabrication protocol.
机译:生物传感器用于通过换能器连接化学和物理世界,从而可以快速检测多种生物制剂。正在开发的一种新的生物传感器,共振光波导生物传感器,利用两个光波导之间的功率传输来检测抗原的存在。功率传递的条件对折射率的变化极为敏感,并使生物传感器对抗原的存在具有高度的敏感性。考虑到装置的高灵敏度,在制造过程中需要高度准确的折射率和厚度。生物传感器换能器的制造是通过电子束物理气相沉积进行的。本文概述了制造工艺规程的发展,并讨论了随着新功能(例如衬底加热和离子束辅助沉积(IBAD))被添加到蒸发室而对沉积膜进行的改进。还讨论了用于优化制造协议的众多表征技术。

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