Hong-Ou-Mandel Interference between Two Hyper-Entangled Photons Enables Observation of Symmetric and Anti-Symmetric Particle Exchange Phases
arXiv:2211.16336 · doi:10.1103/PhysRevLett.129.263602
Abstract
Two-photon Hong-Ou-Mandel (HOM) interference is a fundamental quantum effect with no classical counterpart. The exiting researches on two-photon interference were mainly limited in one degree of freedom (DoF), hence it is still a challenge to realize the quantum interference in multiple DoFs. Here we demonstrate the HOM interference between two hyper-entangled photons in two DoFs of polarization and orbital angular momentum (OAM) for all the sixteen hyper-entangled Bell states. We observe hyper-entangled two-photon interference with bunching effect for ten symmetric states (nine Boson-Boson states, one Fermion-Fermion state) and anti-bunching effect for six anti-symmetric states (three Boson-Fermion states, three Fermion-Boson states). More interestingly, expanding the Hilbert space by introducing an extra DoF for two photons enables to transfer the unmeasurable external phase in the initial DoF to a measurable internal phase in the expanded two DoFs. We directly measured the symmetric exchange phases being , and in radian for the three Boson states in OAM and the anti-symmetric exchange phase being in radian for the other Fermion state, as theoretical predictions. Our work may not only pave the way for more wide applications of quantum interference, but also develop new technologies by expanding Hilbert space in more DoFs.
Accepted by Physical Review Letters
References in corpus (13)
- Experimental quantum teleportation
- Quantum computational advantage using photons
- Ground-to-satellite quantum teleportation
- Beating the Standard Quantum Limit with Four Entangled Photons
- Experimental entanglement of six photons in graph states
- Coherence and Indistinguishability of Single Electrons Emitted by Independent Sources
- Complete experimental toolbox for alignment-free quantum communication
- An atomic Hong-Ou-Mandel experiment
- Anti-symmetrization reveals hidden entanglement
- Optical Nondestructive Controlled-NOT Gate without Using Entangled Photons
- Hong-Ou-Mandel Interference between Two Deterministic Collective Excitations in an Atomic Ensemble
- Revealing quantum statistics with a pair of distant atoms
- Entanglement and interference between different degrees of freedom of photons states
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