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Advances in quantum imaging
DOI:10.1038/s41566-024-01516-w.png)
摘要
En 中文
Modern imaging technologies are widely based on classical principles of light or electromagnetic wave propagation. They can be remarkably sophisticated, with recent successes ranging from single-molecule microscopy to imaging far-distant galaxies. However, new imaging technologies based on quantum principles are gradually emerging. They can either surpass classical approaches or provide novel imaging capabilities that would not otherwise be possible. Here we provide an overview of the most recently developed quantum imaging systems, highlighting the nonclassical properties of sources, such as bright squeezed light, entangled photons and single-photon emitters that enable their functionality. We outline potential upcoming trends and the associated challenges, all driven by a central enquiry, which is to understand whether quantum light can make visible the invisible. This Review provides an overview of the most recently developed quantum imaging systems, highlighting the nonclassical properties of sources, such as bright squeezed light, entangled photons and single-photon emitters that enable their functionality.
Keyword:
EXPERIMENTAL REALIZATION
INDUCED COHERENCE
SUPERRESOLUTION
MICROSCOPY
NOISE
RESOLUTION
DISTANCE
ENTANGLEMENT
SPECTROSCOPY
INTENSITY
期刊
IF:
32.9
论文数:
4.3K
被引数:
6.1W
机构
引用论文
Estimation of a parameter encoded in the modal structure of a light beam: a quantum theory
OPTICA
IF8.5
Quantum imaging of biological organisms through spatial and polarization entanglement通过空间和偏振纠缠实现生物有机体的量子成像
SCIENCE ADVANCES
IF12.5
Compact all-fiber quantum-inspired LiDAR with over 100?dB noise rejection and single photon sensitivity
NATURE COMMUNICATIONS
IF15.7

