Kerr nonlinearity enables state-selective access to a critical window of coexisting localized, critical, and extended states in a quasiperiodic photonic lattice.
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Diffusion maps identify quantum phase transitions in Bose-Hubbard systems, including symmetry-protected topological phases and ergodic vs. many-body localized regimes, without prior order parameters or handcrafted observables.
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Nonlinear Photonic Tripartite Phase
Kerr nonlinearity enables state-selective access to a critical window of coexisting localized, critical, and extended states in a quasiperiodic photonic lattice.
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Unsupervised Learning of Quantum Phase Transitions for Bose-Hubbard lattice systems
Diffusion maps identify quantum phase transitions in Bose-Hubbard systems, including symmetry-protected topological phases and ergodic vs. many-body localized regimes, without prior order parameters or handcrafted observables.