Matano Shinichiro, Komatsu Natsumi, Shimura Yui, Kono Junichiro, Maki Hideyuki
Department of Applied Physics and Physico-Informatics, Keio University, Yokohama 223-8522, Japan.
Department of Electrical and Computer Engineering, Rice University, Houston, Texas 77005, United States.
Nano Lett. 2023 Nov 8;23(21):9817-9824. doi: 10.1021/acs.nanolett.3c02555. Epub 2023 Oct 26.
Spectroscopic analysis with polarized light has been widely used to investigate molecular structure and material behavior. A broadband polarized light source that can be switched on and off at a high speed is indispensable for reading faint signals, but such a source has not been developed. Here, using aligned carbon nanotube (CNT) films, we have developed broadband thermal emitters of polarized infrared radiation with switching speeds of ≲20 MHz. We found that the switching speed depends on whether the electrical current is parallel or perpendicular to the CNT alignment direction with a significantly higher speed achieved in the parallel case. Together with detailed theoretical simulations, our experimental results demonstrate that the contact thermal conductance to the substrate and the conductance to the electrodes are important factors that determine the switching speed. These emitters can lead to advanced spectroscopic analysis techniques with polarized radiation.
利用偏振光进行光谱分析已被广泛用于研究分子结构和材料行为。对于读取微弱信号而言,一种能够高速开关的宽带偏振光源是必不可少的,但目前尚未开发出这样的光源。在此,我们利用排列的碳纳米管(CNT)薄膜,开发出了开关速度约为20兆赫兹的宽带偏振红外辐射热发射器。我们发现,开关速度取决于电流是平行还是垂直于碳纳米管排列方向,在平行情况下实现的速度明显更高。结合详细的理论模拟,我们的实验结果表明,与衬底的接触热导率和与电极的电导率是决定开关速度的重要因素。这些发射器可带来先进的偏振辐射光谱分析技术。