Chirality and concentration detection of biomolecules based on spin Hall effect of light

物理 旋光 手性(物理) 色氨酸 极化(电化学) 光学 凝聚态物理 自旋(空气动力学) 生物分子 分子物理学 化学 纳米技术 量子力学 物理化学 材料科学 热力学 生物化学 手征对称破缺 氨基酸 Nambu–Jona Lasinio模型 夸克
作者
Jiaxin Xiao,Tingting Tang,Xiao Liang,Kunlin Liu,Yujie Tang,Jun Li,Chaoyang Li
出处
期刊:Physics Letters A 卷期号:416: 127692-127692 被引量:10
标识
DOI:10.1016/j.physleta.2021.127692
摘要

The chirality and concentration of biomolecules can be simultaneously determined by weak measurement techniques through spin Hall effect of light (SHEL)effect, which is theoretically and experimentally demonstrated in this paper. The theoretical model concerning the concentration of chiral biomolecules and SHEL has been revealed, taking tryptophan solution as an example, which shows great linearity and the sensitivity can reach to 13 um/mdeg which just use SiO2 as the reflective interface. Moreover, by inducing a film such as Ce1Y2Fe5O12(CeYIG) film with the optimized thickness, the sensitivity is increase to 23 um/mdeg for the refractive index gradient formed by the film enhances SHEL. In order to distinguish these isomers, these two isomers are called L-left-handed and D-right-handed, because the interaction between these chiral biomolecules and polarized light causes the plane of polarization to rotate in the opposite direction. In order to verify our theoretical results, we experimentally measured the SHEL of L- and D-tryptophan solutions with different concentrations. The results indicate that the sensitivity is 20.5 um/mdeg and 20.6 um/mdeg for L- and D-tryptophan solutions, respectively, and increased 1.75 times by introducing the CeYIG film, which is in good agreement with our theoretical results. At the same time, the theoretical model can obtain impurities content between optical isomers in mixed chiral solution. Our study shows great applying potential of weak measurement techniques in exactly and non-contact measurement for chirality and concentration of biomolecules.

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