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Interaction graph engineering in trapped-ion quantum simulators with global drives

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arxiv 2310.07859 v1 pith:6X7GQ4XH submitted 2023-10-11 quant-ph

Interaction graph engineering in trapped-ion quantum simulators with global drives

classification quant-ph
keywords quantuminteractionsimulatorstrapped-ionachievablebroadenfieldsglobal
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Trapped-ion quantum simulators have demonstrated a long history of studying the physics of interacting spin-lattice systems using globally addressed entangling operations. Here, we seek to broaden and delimit the classes of effective spin-spin interactions achievable using exclusively global driving fields. We find that new categories of interaction graphs become achievable with perfect or near-perfect theoretical fidelity by tailoring the coupling to each vibrational mode of the ion crystal, or by shaping the trapping potential to include specific anharmonic terms. We also derive a rigorous test to determine whether a desired interaction graph is accessible using only globally driven fields. These tools broaden the reach of trapped-ion quantum simulators so that they may more easily address open questions in materials science and quantum chemistry.

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