Superconducting wire arrays emulate d-dimensional curved spaces via graphs, enabling study of scalar fields and holographic duality on hyperbolic geometries with robustness to disorder.
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3 Pith papers cite this work. Polarity classification is still indexing.
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Non-Bloch bands in a non-Hermitian extended SSH model support adiabatic charge transport that preserves quantized flow when the bands remain gapped during time evolution.
citing papers explorer
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Graph-based emulation of $d$-dimensional curved spaces with superconducting arrays
Superconducting wire arrays emulate d-dimensional curved spaces via graphs, enabling study of scalar fields and holographic duality on hyperbolic geometries with robustness to disorder.
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Adiabatic charge transport through non-Bloch bands
Non-Bloch bands in a non-Hermitian extended SSH model support adiabatic charge transport that preserves quantized flow when the bands remain gapped during time evolution.
- Anderson localization via Peierls phase modulation