论文标题
Terahertz无扫描的超级成像
Terahertz scanless hypertemporal imaging
论文作者
论文摘要
自1995年首次示威以来,Terahertz时域成像引起了人们对揭示材料光谱指纹的能力,折射率变化和吸收的探针变化的兴趣,并通过飞行时间测量值来检测复杂对象的内部结构。但是,实际上,通常需要长时间的收集时间来使对象进行空间扫描,并且对于每个空间点,它的广泛使用受到了阻碍。在这里,我们通过实施无扫描的单像素成像方案来解决这种基本瓶颈,该方案为系统复杂性和获取时间的前所未有的降低设定了道路。通过正确利用自然波衍射,应用于Terahertz点检测的时间空间编码几乎可以瞬时捕获Terahertz波形,而多维图像是通过计算方法重建的。我们的方案是一个有前途的解决方案,用于开发下一代快速,紧凑的Terahertz成像仪非常适合高重复速率激光源。
Since its first demonstration in 1995, terahertz time-domain imaging has attracted an increasingly growing interest for its ability to reveal spectral fingerprints of materials, probe changes in refractive index and absorption, as well as detect the inner structure of complex objects via time-of-flight measurements. Practically, however, its widespread use has been hampered by the very long acquisition time typically required to spatially raster-scan the object and, for each spatial point, record the field in time via a delay line. Here, we address this fundamental bottleneck by implementing a scanless single-pixel imaging scheme, which sets the path for an unprecedented reduction of both system complexity and acquisition time. By properly exploiting natural wave diffraction, time-to-space encoding applied to terahertz point detection allows for an almost instantaneous capture of the terahertz waveforms, while multidimensional images are reconstructed via a computational approach. Our scheme is a promising solution for the development of next-generation fast and compact terahertz imagers perfectly suitable for high-repetition-rate laser sources.