Quantum enhanced non-interferometric quantitative phase imaging
arXiv:2304.14727 · doi:10.1038/s41377-023-01215-1
Abstract
Quantum entanglement and squeezing have significantly improved phase estimation and imaging in interferometric settings beyond the classical limits. However, for a wide class of non-interferometric phase imaging/retrieval methods vastly used in the classical domain e.g., ptychography and diffractive imaging, a demonstration of quantum advantage is still missing. Here, we fill this gap by exploiting entanglement to enhance imaging of a pure phase object in a non-interferometric setting, only measuring the phase effect on the free-propagating field. This method, based on the so-called "transport of intensity equation", is quantitative since it provides the absolute value of the phase without prior knowledge of the object and operates in wide-field mode, so it does not need time-consuming raster scanning. Moreover, it does not require spatial and temporal coherence of the incident light. Besides a general improvement of the image quality at a fixed number of photons irradiated through the object, resulting in better discrimination of small details, we demonstrate a clear reduction of the uncertainty in the quantitative phase estimation. Although we provide an experimental demonstration of a specific scheme in the visible spectrum, this research also paves the way for applications at different wavelengths, e.g., X-ray imaging, where reducing the photon dose is of utmost importance.
arXiv admin note: text overlap with arXiv:2109.10095
References in corpus (14)
- Correlated imaging, quantum and classical
- Experimental realization of sub-shot-noise quantum imaging
- Imaging with a small number of photons
- Backscattering Differential Ghost Imaging in Turbid Media
- Realisation of the first sub shot noise wide field microscope
- Detection loss tolerant supersensitive phase measurement with an SU(1,1) interferometer
- Beating Abbe diffraction limit in confocal microscopy via non-classical photon statistics
- Quantum imaging with sub-Poissonian light: challenges and perspectives in optical metrology
- Quantum holography with undetected light
- Nanodiamond quantum sensors reveal temperature variation associated to hippocampal neurons firing
- Magneto-optical imaging technique for hostile environment: the ghost imaging approach
- Phase and amplitude imaging with quantum correlations through Fourier Ptychography
- Heisenberg-limited estimation robust to detector inefficiency in a multi-parameter Mach-Zehnder network with squeezed light
- Reconfigurable phase contrast microscopy with correlated photon pairs
Cited by in corpus (7)
- Advances in quantum imaging
- Generation of squeezed vacuum state in the millihertz frequency band
- Biphoton State Reconstruction via Phase Retrieval Methods
- Quantum super-resolution microscopy by photon statistics and structured light
- Quantum Target Ranging for LiDAR
- State-Agnostic Approach to Certifying Electron-Photon Entanglement in Electron Microscopy
- Quantitative phase gradient microscopy with spatially entangled photons