An SU(4) symmetric Pauli-type rate equation unifies collective dissipation across seven four-level atomic topologies, yielding superlinear peak-intensity scaling exponents of 1.81–1.92.
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Review of proposals and experiments using coupled cavity arrays and superconducting circuits to realize many-body physics with photons, including Mott transitions, fractional quantum Hall states, and dissipative phase transitions.
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Multi-channel collective dissipation via the symmetric irreducible representation of SU(4)
An SU(4) symmetric Pauli-type rate equation unifies collective dissipation across seven four-level atomic topologies, yielding superlinear peak-intensity scaling exponents of 1.81–1.92.
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Many-Body Physics and Quantum Simulations with Strongly Interacting Photons
Review of proposals and experiments using coupled cavity arrays and superconducting circuits to realize many-body physics with photons, including Mott transitions, fractional quantum Hall states, and dissipative phase transitions.