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Measurements of complex refractive index change of photoactive yellow protein over a wide wavelength range using hyperspectral quantitative phase imaging

机译:使用高光谱定量相位成像技术在宽波长范围内测量光敏黄色蛋白的复折射率变化

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摘要

A novel optical holographic technique is presented to simultaneously measure both the real and imaginary components of the complex refractive index (CRI) of a protein solution over a wide visible wavelength range. Quantitative phase imaging was employed to precisely measure the optical field transmitted from a protein solution, from which the CRIs of the protein solution were retrieved using the Fourier light scattering technique. Using this method, we characterized the CRIs of the two dominant structural states of a photoactive yellow protein solution over a broad wavelength range (461–582 nm). The significant CRI deviation between the two structural states was quantified and analysed. The results of both states show the similar overall shape of the expected rRI obtained from the Kramers–Kronig relations.
机译:提出了一种新颖的光学全息技术,可以同时在很宽的可见波长范围内测量蛋白质溶液的复折射率(CRI)的实部和虚部。定量相成像用于精确测量从蛋白质溶液传输的光场,使用傅里叶光散射技术从中检索出蛋白质溶液的CRI。使用这种方法,我们在宽波长范围(461–582 nm)内表征了光敏黄色蛋白质溶液的两个主要结构状态的CRI。两种结构状态之间显着的CRI偏差被量化和分析。两种状态的结果表明,从克拉默斯-克罗尼格关系获得的预期rRI的总体形状相似。

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