太赫兹辐射
材料科学
光电子学
铯
里德伯公式
太赫兹光谱与技术
光学
扩散
化学气相沉积
光谱学
原子钟
光抽运
铷
图像分辨率
可视化
氢
薄膜
远红外激光器
工作(物理)
半导体
纳米机电系统
作者
Bin Zhang,Jun Wan,Tao Li,Xianzhe Li,Yu Wu,Qinwen Huang,Xinyu Yang,Wei Huang,Kaiqing Zhang,Haixiao Deng
标识
DOI:10.1109/tthz.2025.3646034
摘要
Rydberg atomic sensors offer transformative potential for high-speed, high-sensitivity terahertz (THz) imaging. However, previous systems are hindered by restricted imaging areas, largely due to the compact dimension of atomic vapor cells and inefficient beam-shaping methodologies. We present a THz imaging system with a 50 mm × 50mm area, enabled by a custom-engineered scaled-up atomic vapor cell and an optimized beam-shaping optical architecture. Experimental validation confirms that this system achieves near-diffraction-limited, high-resolution THz imaging at 0.55 THz under ambient conditions. Furthermore, its capabilities are demonstrated through real-time visualization of the diffusion dynamics of a deionized water droplet in anhydrous ethanol. This work not only expands the boundaries of Rydberg atomic sensors but also establishes a critical foundation for advancing THz imaging technologies toward into real-world, large-scale applications.
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