Generalized Krylov complexity predicts the minimum time to realize target operations in analog quantum simulators such as Rydberg atom arrays.
A neutral-atom hubbard quantum simulator in the cryogenic regime
3 Pith papers cite this work. Polarity classification is still indexing.
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Experimental demonstration of collisional spin-exchange and pair-tunneling gates on fermionic atoms achieving up to 99.75(6)% fidelity and Bell-state lifetimes over 10 seconds.
Proposes geometric orthogonal metals from fluctuating stripes as the origin of the pseudogap, featuring hidden antiferromagnetism and a transition to a Fermi liquid at a hidden quantum critical point.
citing papers explorer
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Bridging Krylov Complexity and Universal Analog Quantum Simulator
Generalized Krylov complexity predicts the minimum time to realize target operations in analog quantum simulators such as Rydberg atom arrays.
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High-fidelity collisional quantum gates with fermionic atoms
Experimental demonstration of collisional spin-exchange and pair-tunneling gates on fermionic atoms achieving up to 99.75(6)% fidelity and Bell-state lifetimes over 10 seconds.
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Geometric orthogonal metals: Hidden antiferromagnetism and pseudogap from fluctuating stripes
Proposes geometric orthogonal metals from fluctuating stripes as the origin of the pseudogap, featuring hidden antiferromagnetism and a transition to a Fermi liquid at a hidden quantum critical point.