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Tailoring Spatial Correlations With Quantum Interference
DOI:10.1002/lpor.202502895.png)
Abstract
En 中文
Photon correlations represent a central resource in many quantum optics experiments, with applications ranging from quantum information protocols to sensing. Engineering such correlations is often challenging, especially in multi-particle scenarios. This work describes an effective method for shaping spatial correlations between photons by patterning their distinguishability in a quantum interference setup. How one may write and edit these bi-photon correlations between the two output channels of a beam-splitter is presented, where the information encoded remains hidden from conventional intensity measurements. The scheme presented here offers an easy extension to multiparticle scenarios and facilitates the transmission of high-dimensional quantum information, opening new avenues for applications in quantum technologies and imaging protocols.
Keywords:
photonic correlations
quantum interference
structured light
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