A global adiabatic criterion selects Gaussian pulse timings that suppress leakage during non-Abelian Thouless pumping in a twelve-level Rydberg synthetic Lieb lattice, yielding order-dependent population transport consistent with noncommuting holonomic operations.
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Ytterbium Rydberg pairs naturally realize strongly anisotropic XXZ spin interactions that can be tuned by a magnetic field.
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Non-Abelian Thouless pumping based on the global adiabatic criterion in Rydberg synthetic lattices
A global adiabatic criterion selects Gaussian pulse timings that suppress leakage during non-Abelian Thouless pumping in a twelve-level Rydberg synthetic Lieb lattice, yielding order-dependent population transport consistent with noncommuting holonomic operations.
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Magnetic-field control of interactions in alkaline-earth Rydberg atoms and applications to {\it XXZ} models
Ytterbium Rydberg pairs naturally realize strongly anisotropic XXZ spin interactions that can be tuned by a magnetic field.