论文标题
基于极化石墨烯的中红外检测器
Polarization-resolving graphene-based mid-infrared detector
论文作者
论文摘要
用片上设备解析光的极化的能力代表了光电子中的一个紧迫问题。到目前为止,具有极化分辨率的检测器主要需要多个方向的检测器或可移动的外部极化器。在这里,我们在实验上证明了使用具有不同金属触点的单个化学蒸气式石墨烯通道设备来解决中红外光的极化。这种可能性源于石墨烯 - 金属连接处光响应对栅极电压和极化角的异常依赖性。也就是说,存在某些栅极电压,提供了对极化不敏感的信号。在这些电压下的操作可用于检测器的功率校准。在其他栅极电压下,检测器具有非常强的极化灵敏度,两个正交极化的信号比率达到约10。在功率校准之后,在这些电压下运行可以提供有关极化角度的信息。我们表明,在各向同性和各向异性光伏生成途径的竞争中,光信号的这种异常的栅极和极化依赖性可能会出现,并讨论可能的物理候选者。
The ability to resolve the polarization of light with on-chip devices represents an urgent problem in optoelectronics. The detectors with polarization resolution demonstrated so far mostly require multiple oriented detectors or movable external polarizers. Here, we experimentally demonstrate the feasibility to resolve the polarization of mid-infrared light with a single chemical-vapor-deposited graphene-channel device with dissimilar metal contacts. This possibility stems from an unusual dependence of photoresponse at graphene-metal junctions on gate voltage and polarization angle. Namely, there exist certain gate voltages providing the polarization-insensitive signal; operation at these voltages can be used for power calibration of the detector. At other gate voltages, the detector features very strong polarization sensitivity, with the ratio of signals for two orthogonal polarizations reaching ~10. Operation at these voltages can provide information about polarization angles, after the power calibration. We show that such unusual gate- and polarization-dependence of photosignal can appear upon competition of isotropic and anisotropic photovoltage generation pathways and discuss the possible physical candidates.