Relativistic continuous matrix product states yield competitive variational approximations to ground state energies and observables in the phi^4, Sine-Gordon, and Sinh-Gordon models, including strongly coupled regimes.
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4 Pith papers cite this work. Polarity classification is still indexing.
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Engineering resonant interband transitions in a GaAs/AlGaAs heterostructure combined with a high-Q metasurface boosts the effective second-order nonlinearity to ~14 nm/V at 1.57 μm.
HSE06 calculations of Cu defects in silicon propose a Cu_i4V complex to resolve discrepancies in the Cu_PL defect's transition levels and formation mechanism.
Surveys theoretical concepts of polariton Bose-Einstein condensates, emphasizing that linear and non-interacting effects explain much of the phenomenology including bosonic correlations and coherence buildup.
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Some progress on the use of the variational method in quantum field theory
Relativistic continuous matrix product states yield competitive variational approximations to ground state energies and observables in the phi^4, Sine-Gordon, and Sinh-Gordon models, including strongly coupled regimes.
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Quantum-Well-Metasurface to Maximize Nonlinear Polarization
Engineering resonant interband transitions in a GaAs/AlGaAs heterostructure combined with a high-Q metasurface boosts the effective second-order nonlinearity to ~14 nm/V at 1.57 μm.
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Hybrid functional calculation of electrical activity and complexing mechanism of Cu-related defects
HSE06 calculations of Cu defects in silicon propose a Cu_i4V complex to resolve discrepancies in the Cu_PL defect's transition levels and formation mechanism.
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Polariton BECs: Theory and Concepts
Surveys theoretical concepts of polariton Bose-Einstein condensates, emphasizing that linear and non-interacting effects explain much of the phenomenology including bosonic correlations and coherence buildup.