Zhang Yilong, Li Dongmei, He Yonghong, Shen Zhiyuan, He Qinghua
Opt Lett. 2016 Nov 15;41(22):5409-5412. doi: 10.1364/OL.41.005409.
A reflection-type phase-sensitive weak measurement for biosensing and chemical label-free sensing is presented. The phase difference between p and s polarizations in total internal reflection caused by biomolecular recognition is measured by weak value amplification. The system with p and s polarizations in a common path is stable and robust. The sensing process occurring on the silicon dioxide surface is achieved with a resolution of 3.6×10 refractive index units. The applicability is demonstrated by real-time monitoring biomolecular interaction of IgG and protein A.
本文提出了一种用于生物传感和无化学标记传感的反射型相敏弱测量方法。通过弱值放大测量生物分子识别引起的全内反射中p偏振和s偏振之间的相位差。具有共光路中p偏振和s偏振的系统稳定且坚固。在二氧化硅表面发生的传感过程实现了3.6×10折射率单位的分辨率。通过实时监测IgG和蛋白A的生物分子相互作用证明了其适用性。