Zhang Tianrui, Fan Fei, Cheng Jierong, Wang Xianghui, Chang Shengjiang
Appl Opt. 2022 Jul 20;61(21):6391-6397. doi: 10.1364/AO.463924.
Terahertz (THz) waves have attracted much attention in the field of biosensing due to advantages including non-destructiveness, being label-free, and high-sensitivity detection. Here we have experimentally demonstrated a THz polarization sensing method based on reflective metasurface sensors for detecting concentrations of protein solutions and their crystallization process. The protein with varying concentrations has been detected by five different polarization parameters, which show different spectral responses and sensing sensitivities. The sensing accuracy can reach the order of /. Furthermore, the crystallization process of the protein sample from the dissolved state to the crystalline has been dynamically measured by polarization sensing, of which the highest sensitivity can reach 0.67 °/%. Therefore, this new sensing platform can have broad development prospects in the trace matter detection of the biological sample.
太赫兹(THz)波由于具有非破坏性、无标记和高灵敏度检测等优点,在生物传感领域引起了广泛关注。在这里,我们通过实验演示了一种基于反射超表面传感器的太赫兹偏振传感方法,用于检测蛋白质溶液的浓度及其结晶过程。通过五个不同的偏振参数检测了不同浓度的蛋白质,它们表现出不同的光谱响应和传感灵敏度。传感精度可达到 1/10 的量级。此外,还通过偏振传感动态测量了蛋白质样品从溶解态到结晶态的结晶过程,其最高灵敏度可达 0.67°/%。因此,这个新的传感平台在生物样本中痕量物质的检测方面具有广阔的发展前景。