Subjective collapse views fail in the extended Wigner's friend scenario, but single-world interpretations remain possible if observations are protected from quantum erasure.
Peres, Stability of quantum motion in chaotic and regular systems, Phys
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Krylov subspace methods efficiently describe quantum evolution, operator growth, and chaos in many-body systems, with metrics like Krylov complexity and applications in open systems, QFT, and quantum computing.
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The extended Wigner's friend, many- and single-worlds and reasoning from observation
Subjective collapse views fail in the extended Wigner's friend scenario, but single-world interpretations remain possible if observations are protected from quantum erasure.
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Quantum Dynamics in Krylov Space: Methods and Applications
Krylov subspace methods efficiently describe quantum evolution, operator growth, and chaos in many-body systems, with metrics like Krylov complexity and applications in open systems, QFT, and quantum computing.