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Laser-free trapped-ion entangling gates with simultaneous insensitivity to qubit and motional decoherence

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arxiv 1910.14178 v2 pith:4AID5R5L submitted 2019-10-30 quant-ph physics.atom-ph

classification quant-phphysics.atom-ph
keywords decoherencegatelaser-freeadditionalcontrolentanglingfieldsgates
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The dominant error sources for state-of-the-art laser-free trapped-ion entangling gates are decoherence of the qubit state and the ion motion. The effect of these decoherence mechanisms can be suppressed with additional control fields, or with techniques that have the disadvantage of reducing gate speed. Here, we propose using a near-motional-frequency magnetic field gradient to implement a laser-free gate that is simultaneously resilient to both types of decoherence, does not require additional control fields, and has a relatively small cost in gate speed.

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