Mid-infrared computational temporal ghost imaging

Ghost imaging in the time domain allows for reconstructing fast temporal objects using a slow photodetector. The technique involves correlating random or pre-programmed probing temporal intensity patterns with the integrated signal measured after modulation by the temporal object. However, the imple...

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Veröffentlicht in:Light, science & applications science & applications, 2024-05, Vol.13 (1), p.124-124, Article 124
Hauptverfasser: Wu, Han, Hu, Bo, Chen, Lu, Peng, Fei, Wang, Zinan, Genty, Goëry, Liang, Houkun
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Sprache:eng
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Zusammenfassung:Ghost imaging in the time domain allows for reconstructing fast temporal objects using a slow photodetector. The technique involves correlating random or pre-programmed probing temporal intensity patterns with the integrated signal measured after modulation by the temporal object. However, the implementation of temporal ghost imaging necessitates ultrafast detectors or modulators for measuring or pre-programming the probing intensity patterns, which are not available in all spectral regions especially in the mid-infrared range. Here, we demonstrate a frequency downconversion temporal ghost imaging scheme that enables to extend the operation regime to arbitrary wavelengths regions where fast modulators and detectors are not available. The approach modulates a signal with temporal intensity patterns in the near-infrared and transfers the patterns to an idler via difference-frequency generation in a nonlinear crystal at a wavelength where the temporal object can be retrieved. As a proof-of-concept, we demonstrate computational temporal ghost imaging in the mid-infrared with operating wavelength that can be tuned from 3.2 to 4.3 μm. The scheme is flexible and can be extended to other regimes. Our results introduce new possibilities for scan-free pump-probe imaging and the study of ultrafast dynamics in spectral regions where ultrafast modulation or detection is challenging such as the mid-infrared and THz regions. We have introduced the concept of frequency downconversion temporal ghost imaging that enables to extend the operation regime of computational temporal ghost imaging to the mid-infrared.
ISSN:2047-7538
2095-5545
2047-7538
DOI:10.1038/s41377-024-01426-0