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Full-mode characterization of correlated photon pairs generated inspontaneous downconversion

Alessio D’Errico, Felix Hufnagel, Filippo Miatto, Mohammadreza Rezaee, Ebrahim Karimi

2021Optics Letters20 citationsDOIOpen Access PDF

Abstract

Spontaneous parametric downconversion is the primary source to generate entangled photon pairs in quantum photonics laboratories. Depending on the experimental design, the generated photon pairs can be correlated in the frequency spectrum, polarization, position-momentum, and spatial modes. Exploring the spatial modes' correlation has hitherto been limited to the polar coordinates' azimuthal angle, and a few attempts to study Walsh mode's radial states. Here, we study the full-mode correlation, on a Laguerre-Gauss basis, between photon pairs generated in a type-I crystal. Furthermore, we explore the effect of a structured pump beam possessing different spatial modes onto bi-photon spatial correlation. Finally, we use the capability to project over arbitrary spatial mode superpositions to perform the bi-photon state's full quantum tomography in a 16-dimensional subspace.

Topics & Concepts

PhysicsOpticsSpontaneous parametric down-conversionPhotonParametric statisticsPhotonicsQuantum opticsAzimuthQuantum imagingQuantum entanglementPhoton entanglementSpontaneous emissionQuantum informationQuantumAmplified spontaneous emissionBeam (structure)Spatial frequencyQuantum correlationCharacterization (materials science)Photon countingQuantum information scienceQuantum channelLight beamMeasure (data warehouse)LaserQuantum networkMode (computer interface)Quantum stateQuantum technologyNonlinear opticsQuantum mechanicsCavity quantum electrodynamicsQuantum sensorQuantum Information and CryptographyMechanical and Optical ResonatorsQuantum optics and atomic interactions
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