Non-degenerate wavelength computational ghost imaging with thermal light
arXiv:1801.10045 · doi:10.1364/OE.27.025187
Abstract
Non-degenerate wavelength computational ghost imaging with thermal light source is studied theoretically and experimentally. The acquired computational ghost images are of high quality when the wavelength of computed light is different from the light detected by bucket detector. Compared to the necessary light of short wavelength in previous ghost imaging, the use of longer wavelength light is demonstrated to bring about ghost images with higher spatial resolution, in strong atmospheric turbulence.
9 pages, 5figures
References in corpus (7)
- Fourier-transform Ghost Imaging with Hard X-rays
- Experimental x-ray ghost imaging
- Ghost Imaging with Atoms
- Unified Theory of Ghost Imaging with Gaussian-State Light
- Backscattering Differential Ghost Imaging in Turbid Media
- Improving imaging resolution of shaking targets by Fourier-transform ghost diffraction
- Computational Ghost Imaging
Cited by in corpus (4)
- Quantum Imaging Using Spatially Entangled Photon Pairs from a Nonlinear Metasurface
- Turbulence-immune computational ghost imaging based on a multi-scale generative adversarial network
- Correlated-photon imaging at 10 volumetric images per second
- Color night vision correlation imaging without an infrared focal plane array