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Photo-Nernst detection of cyclotron resonance in partially irradiated graphene

机译:在部分照射石墨烯中的回旋谐振的照片 - 内部检测

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摘要

Cyclotron resonance of a Landau-quantized graphene can absorb a significant amount of infrared light. However, the application of this phenomenon to the photodetector had been limited due to the lack of efficient photon to the charge conversion scheme. Here, we demonstrate the detection of cyclotron resonance in a partially metal-masked monolayer graphene two-terminal device using the photo-Nernst effect. Due to the presence of the mask, incident infrared light is irradiated on only one-half of the graphene channel. This partial irradiation creates a temperature gradient perpendicular to the graphene channel. In the presence of an external magnetic field, thermopower is generated perpendicular to the temperature gradient due to the Nernst effect. Consequently, photo-Nernst voltage is generated along the graphene channel, which can be detected from the contacts on both ends of the channel. We demonstrate selective detection of the photo-Nernst effect while minimizing the other photovoltaic contributions, such as the photo-Seebeck effect. We investigate the dependence of the photo-Nernst effect on the magnetic field and excitation wavelength, which reveals a significant enhancement of the photo-Nernst signal at the cyclotron resonance conditions in graphene. Our finding could facilitate the realization of a far-infrared light detector using cyclotron resonance of graphene.
机译:Landau - 量化石墨烯的回旋谐振可以吸收大量的红外光。然而,由于电荷转换方案缺乏有效的光子,因此由于缺乏高效的光子而受到限制,这种现象的应用受到限制。这里,我们证明了使用光学态效应的部分金属掩模单层石墨烯二端器件中的回旋加速器共振的检测。由于存在掩模,仅在石墨烯通道的一半照射入射红外光。该部分辐射产生垂直于石墨烯通道的温度梯度。在存在外部磁场的情况下,由于NERNST效应,恒温器垂直于温度梯度产生。因此,沿着石墨烯通道产生光谱电压,这可以从通道两端的触点检测到。我们展示了光学内核效应的选择性检测,同时最小化了其他光伏贡献,例如光拍效应。我们研究了光盘效应对磁场和激发波长的依赖性,揭示了石墨烯中的回旋环谐振条件下的光学骨骼信号的显着增强。我们的发现可以利用石墨烯的回旋共振实现远红外光检测器。

著录项

  • 来源
    《Applied Physics Letters》 |2019年第15期|153102.1-153102.5|共5页
  • 作者单位

    Univ Tokyo Inst Ind Sci Meguro Ku 4-6-1 Komaba Tokyo 1538505 Japan;

    Univ Tokyo Inst Ind Sci Meguro Ku 4-6-1 Komaba Tokyo 1538505 Japan;

    Univ Tokyo Inst Ind Sci Meguro Ku 4-6-1 Komaba Tokyo 1538505 Japan;

    Natl Inst Mat Sci 1-1 Namiki Tsukuba Ibaraki 3050044 Japan;

    Natl Inst Mat Sci 1-1 Namiki Tsukuba Ibaraki 3050044 Japan;

    Univ Tokyo Inst Ind Sci Meguro Ku 4-6-1 Komaba Tokyo 1538505 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 22:17:49

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