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Analysis of transmission through slit and multiple grooves structures for biosensors

机译:通过狭缝和多个凹槽结构进行分析,用于生物传感器

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We analyze the transmission property of nanostructures made on silver and gold metal for the applications in optical biosensors. Various structures such as slit only, slit groove slit, and multiple slit and groove structures are taken into account to find the effect of various physical parameters such as number of grooves, number of slits and others on the transmission of different wavelength light sources through the structure. A broad wavelength of 400 nm to 900 nm is used to analyze the transmission through the structure. With these structures and broad light source, change in transmission intensity is analyzed with the change in the refractive index. The change in refractive index of the analyte varies transmission intensity and wavelength shift at the output beam which can be used for sensing the amount of analyte such as monitoring glucose amount on blood/saliva, hydrogen peroxide and others. The detection of these analytes can be used to detect the different disease. The analysis of the transmittance through the nanostructure can be used for the detection of several disease such as diabetes and others through the saliva, blood and others non-invasively.
机译:我们分析了在光学生物传感器中的应用中的银和金金属制成的纳米结构的传动特性。仅考虑仅狭缝,狭缝槽狭缝和多个狭缝和凹槽结构的各种结构,以找到各种物理参数,例如凹槽的数量,狭缝数,狭缝数和其他不同波长光源的效果结构体。广泛波长为400nm至900nm来分析通过该结构的传输。利用这些结构和宽光源,随着折射率的变化分析了传输强度的变化。分析物的折射率的变化在输出光束上变化了传输强度和波长偏移,其可用于感测分析物的量,例如监测血液/唾液,过氧化氢等的葡萄糖量。这些分析物的检测可用于检测不同的疾病。通过纳米结构的透射率的分析可用于通过唾液,血液和其他非侵入性地检测糖尿病等几种疾病和其他疾病。

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