Zacheo Andrea, Matano Shinichiro, Shimura Yui, Yu Shengjie, Doumani Jacques, Komatsu Natsumi, 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.
ACS Nano. 2024 Jun 18;18(24):15769-15778. doi: 10.1021/acsnano.4c02447. Epub 2024 Jun 3.
A polarized light source covering a wide wavelength range is required in applications across diverse fields, including optical communication, photonics, spectroscopy, and imaging. For practical applications, high degrees of polarization and thermal performance are needed to ensure the stability of the radiation intensity and low energy consumption. Here, we achieved efficient emission of highly polarized and broadband thermal radiation from a suspended aligned carbon nanotube film. The anisotropic nature of the film, combined with the suspension, led to a high degree of linear polarization (∼0.9) and great thermal performance. Furthermore, we performed time-resolved measurements of thermal emission from the film, revealing a fast time response of approximately a few microseconds. We also obtained visible light emission from the device and analyzed the film's mechanical breakdown behavior to improve the emission intensity. Finally, we demonstrated that suspended devices with a constriction geometry can enhance the heating performance. These results show that carbon nanotube film-based devices, as electrically driven thermal emitters of polarized radiation, can play an important role for future development in optoelectronics and spectroscopy.
包括光通信、光子学、光谱学和成像在内的各个领域的应用都需要覆盖宽波长范围的偏振光源。对于实际应用,需要高偏振度和热性能来确保辐射强度的稳定性并降低能耗。在此,我们实现了从悬浮排列的碳纳米管薄膜高效发射高偏振和宽带热辐射。薄膜的各向异性性质与悬浮相结合,导致了高度的线性偏振(约0.9)和出色的热性能。此外,我们对薄膜的热发射进行了时间分辨测量,揭示了大约几微秒的快速时间响应。我们还从该器件获得了可见光发射,并分析了薄膜的机械击穿行为以提高发射强度。最后,我们证明具有收缩几何形状的悬浮器件可以提高加热性能。这些结果表明,基于碳纳米管薄膜的器件作为偏振辐射的电驱动热发射器,可在光电子学和光谱学的未来发展中发挥重要作用。