A new qubit mapping of 1D SU(2) gauge theory removes alignment degrees of freedom analytically, enabling a two-plaquette simulation on IBM quantum hardware.
Constrained dynamics via the Zeno effect in quantum simulation: Implementing non-Abelian lattice gauge theories with cold atoms
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abstract
We show how engineered classical noise can be used to generate constrained Hamiltonian dynamics in atomic quantum simulators of many-body systems, taking advantage of the continuous Zeno effect. After discussing the general theoretical framework, we focus on applications in the context of lattice gauge theories, where imposing exotic, quasi-local constraints is usually challenging. We demonstrate the effectiveness of the scheme for both Abelian and non-Abelian gauge theories, and discuss how engineering dissipative constraints substitutes complicated, non-local interaction patterns by global coupling to laser fields.
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SU(2) non-Abelian gauge field theory in one dimension on digital quantum computers
A new qubit mapping of 1D SU(2) gauge theory removes alignment degrees of freedom analytically, enabling a two-plaquette simulation on IBM quantum hardware.