Smalley Joseph S T, Vallini Felipe, Fainman Yeshaiahu
Department of Electrical & Computer Engineering, University of California San Diego, La Jolla, CA, 92037, USA.
Department of Mechanical Engineering, University of California Berkeley, Berkeley, CA 94720, USA.
Biomed Opt Express. 2017 Nov 14;8(12):5594-5603. doi: 10.1364/BOE.8.005594. eCollection 2017 Dec 1.
We present an analytical technique for designing integrated polarized light-emitting diodes (LEDs) and polarization-sensitive photodiodes (PD) based on hyperbolic metasurfaces (HMS) for the detection of optical activity. Leveraging effective medium theory and the scattering matrix method, we first derive the conditions for optimizing the transmission efficiency of an LED-integrated HMS and the absorption efficiency of a PD-integrated HMS. We then propose using a differential detection technique with orthogonally oriented PD-integrated HMS to measure optical activity in an extremely compact volume. Finally, we perform an estimation of system performance and find that, relative to state-of-the-art polarimeters, a reduction of complexity can be achieved without sacrificing resolution. The results hold merit for reducing the size and cost of polarimeters and associated polarimetric sensing systems, which play vital roles in the pharmaceutical and biomedical sciences.
我们提出了一种分析技术,用于设计基于双曲线超表面(HMS)的集成偏振发光二极管(LED)和偏振敏感光电二极管(PD),以检测旋光性。利用有效介质理论和散射矩阵方法,我们首先推导出优化集成LED的HMS的传输效率和集成PD的HMS的吸收效率的条件。然后,我们提出使用具有正交取向的集成PD的HMS的差分检测技术,在极其紧凑的体积中测量旋光性。最后,我们对系统性能进行了评估,发现相对于现有技术的旋光仪,在不牺牲分辨率的情况下可以降低复杂度。这些结果对于减小旋光仪和相关偏振传感系统的尺寸和成本具有重要意义,这些系统在制药和生物医学科学中起着至关重要的作用。