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Temporal resolution of ultrafast compressive imaging using a single-chirped optical probe

Haocheng Tang, Miguel Márquez, Ting Men, Yaodan Hu, Weiqi Tang, Jinyang Liang, Zhengyan Li

2023Optics Letters11 citationsDOI

Abstract

Ultrafast compressive imaging captures three-dimensional spatiotemporal information of transient events in a single shot. When a single-chirped optical probe is applied, the temporal information is obtained from the probe modulated in amplitude or phase using a direct frequency-time mapping method. Here, we extend the analysis of the temporal resolution of conventional one-dimensional ultrafast measurement techniques such as spectral interferometry to that in three-dimensional ultrafast compressive imaging. In this way, both the amplitude and phase of the probe are necessary for a full Fourier transform method, which obtains temporal information with an improved resolution determined by probe spectral bandwidth. The improved temporal resolution potentially enables ultrafast compressive imaging with an effective imaging speed at the quadrillion-frames-per-second level.

Topics & Concepts

OpticsUltrashort pulseMaterials scienceTemporal resolutionResolution (logic)LaserPhysicsComputer scienceArtificial intelligenceSpectroscopy Techniques in Biomedical and Chemical ResearchAdvanced Fiber Laser TechnologiesPhotoacoustic and Ultrasonic Imaging