Abstract

Quantum techniques are commonly used to enhance measurement performance in many fields, such as imaging, microscopy, communications, computing and metrology. In quantum imaging and microscopy, entangled photons are exploited to improve image resolution and sensitivity, overcoming the diffraction limit and providing Sub-Shot Noise (SSN) measurements [1]. Super resolution imaging, SSN imaging, quantum-enhanced displacement sensing, correlation plenoptic imaging and ghost imaging are different quantum techniques used to enhance image quality. All them require time-resolved single-photon detectors, capable to detect photon coincidences with sub-nanosecond precision.

Keywords:
Quantum imaging Quantum metrology Ghost imaging Photon Optics Quantum limit Microscopy Physics Image resolution Detector Photon counting Resolution (logic) Image quality Noise (video) Quantum sensor Quantum Metrology Diffraction Quantum dot Quantum technology Optoelectronics Computer science Image (mathematics) Computer vision Artificial intelligence Open quantum system

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Topics

Random lasers and scattering media
Physical Sciences →  Physics and Astronomy →  Acoustics and Ultrasonics
Advanced Optical Sensing Technologies
Physical Sciences →  Physics and Astronomy →  Instrumentation
Advanced Fluorescence Microscopy Techniques
Life Sciences →  Biochemistry, Genetics and Molecular Biology →  Biophysics
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