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A Simulation Study on Light Scattering Effect on Water-borne Bacteriophage Virus Using Mie Analysis

机译:Mie分析模拟水传播噬菌体病毒的光散射效应

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Diagnosis and characterization of Viruses, one of the most critical particle type among the water-borne organisms, have been going through continuous process of improvements and analyses. In this paper, a Mie scattering analysis has been presented for optical sorting of nanoscale sphere shaped Y1, T4 and C2 bacteriophage viruses suspended in Potassium Bi-Phosphate (PBS) solution. In this simulation work, Bohren and Huffman (BHMIE) model has been used and the incident light of 514 nm wavelength (resembling Argon ion laser) has been considered. Intensity components for different angles have been studied and it has been found that from 30° angle the components for the three viruses shift their comparative positions and give different characteristics. The extinction and scattering efficiencies remain same and around zero from size factor 0 to 0.6. But after size factor 0.6, the organism with smallest diameter shows the highest efficiency, whereas the other two viruses show identical efficiency result.
机译:病毒是水生生物中最关键的一种颗粒病毒,其诊断和鉴定一直在不断进行改进和分析。在本文中,已经提出了Mie散射分析法,用于对悬浮在双磷酸钾(PBS)溶液中的纳米级球形Y1,T4和C2噬菌体病毒进行光学分选。在此仿真工作中,已使用Bohren和Huffman(BHMIE)模型,并考虑了514 nm波长的入射光(类似于氩离子激光器)。对不同角度的强度成分进行了研究,发现三种病毒的成分从30°角度移动了它们的比较位置并赋予了不同的特性。消光和散射效率保持不变,从尺寸系数0到0.6大约为零。但是在大小因子为0.6之后,直径最小的生物显示出最高的效率,而其他两种病毒显示出相同的效率结果。

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