k-local quantum Hamiltonians admit system-size-independent spectral gap for Gibbs samplers at high temperature, enabling FPT quantum approximation algorithms for partition functions.
Fault-tolerant quantum computation with constant overhead.Quantum Information and Computation , 14:1338
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Numerical simulations indicate isotropic errors degrade Grover's algorithm performance and success probability on noisy quantum hardware.
Introduces a framework for universal fully holonomic adiabatic gates in Rydberg atom systems with geometric robustness analysis.
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Fast mixing of all-to-all quantum systems at high temperatures
k-local quantum Hamiltonians admit system-size-independent spectral gap for Gibbs samplers at high temperature, enabling FPT quantum approximation algorithms for partition functions.
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Effect of isotropic errors on the complexity of Grover's algorithm
Numerical simulations indicate isotropic errors degrade Grover's algorithm performance and success probability on noisy quantum hardware.
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Holonomic quantum computation: a scalable adiabatic architecture
Introduces a framework for universal fully holonomic adiabatic gates in Rydberg atom systems with geometric robustness analysis.