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Development of integrated waveguide ...
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Harrison, Mark Christopher.
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Development of integrated waveguide biosensors and portable optical biomaterial analysis systems.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Development of integrated waveguide biosensors and portable optical biomaterial analysis systems./
作者:
Harrison, Mark Christopher.
面頁冊數:
160 p.
附註:
Source: Dissertation Abstracts International, Volume: 77-07(E), Section: B.
Contained By:
Dissertation Abstracts International77-07B(E).
標題:
Optics. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=10014549
ISBN:
9781339485591
Development of integrated waveguide biosensors and portable optical biomaterial analysis systems.
Harrison, Mark Christopher.
Development of integrated waveguide biosensors and portable optical biomaterial analysis systems.
- 160 p.
Source: Dissertation Abstracts International, Volume: 77-07(E), Section: B.
Thesis (Ph.D.)--University of Southern California, 2015.
Optical and photonic devices have numerous applications that range from telecommunications to various types of sensing. They are widely studied in a number of geometries and are often designed to accomplish a specific application. However, sometimes specific devices can be improved upon or intelligently designed to enable new applications. To accelerate this process, a combination of modeling and experimental efforts can be applied. The focus of this dissertation is the improvement and modification of existing waveguides and waveguide devices for new applications by the use of complementary modeling and experimental research to better understand their behavior.
ISBN: 9781339485591Subjects--Topical Terms:
517925
Optics.
Development of integrated waveguide biosensors and portable optical biomaterial analysis systems.
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Source: Dissertation Abstracts International, Volume: 77-07(E), Section: B.
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In the first part of the dissertation, fluorescent waveguide sensors are modeled and developed for use in spatiotemporal fluorescent measurements. The experimental measurements are enabled by the unique geometry of the devices which was better understood after modeling them. Subsequently, suspended, silica-on-silicon waveguides are explored in a new geometry and their behavior is modeled as well. Improvements to these devices are attempted via the use of conformal coatings of different materials. Next, a suspended silica-on-silicon waveguide splitter is developed for use as a biosensor, with models used to predict its sensing behavior. Finally, an optical fiber-based polarimetric stress sensor for use with visco-elastic materials is developed by improving upon previous work and generalizing the theoretical analysis and modeling of these types of polarimetric sensors.
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http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=10014549
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