Holographic isoTNS represent volume-law entangled states including arbitrary fermionic Gaussian states, Clifford states, and certain short-time evolved states using an extra network dimension with isometric constraints.
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Bacterial populations exhibit active gas, liquid, glass, and liquid crystal phases that differ from equilibrium thermal counterparts, with implications for physics and biology.
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Holographic Representation of One-Dimensional Many-Body Quantum States via Isometric Tensor Networks
Holographic isoTNS represent volume-law entangled states including arbitrary fermionic Gaussian states, Clifford states, and certain short-time evolved states using an extra network dimension with isometric constraints.
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Various phases of active matter emerging from bacteria and their implications
Bacterial populations exhibit active gas, liquid, glass, and liquid crystal phases that differ from equilibrium thermal counterparts, with implications for physics and biology.