A major obstacle in the way of practical quantum computing is achieving scalable and robust high-fidelity entangling gates. To this end, quantum control has become an essential tool, as it can make the entangling interaction resilient to sources of noise. Nevertheless, it may be difficult to identify an appropriate quantum control technique for a particular need given the breadth of work pertaining to robust entanglement. To this end, we attempt to consolidate the literature by providing a non-exhaustive summary and critical analysis. The quantum control methods are separated into two categories: schemes which extend the robustness to (i) spin or (ii) motional decoherence. We choose to focus on extensions of the sigma ( x ) circle times sigma ( x ) Molmer-Sorensen interaction using microwaves and a static magnetic field gradient. Nevertheless, some of the techniques discussed here can be relevant to other trapped ion architectures or physical qubit implementations. Finally, we experimentally realize a proof-of-concept interaction with simultaneous robustness to spin and motional decoherence by combining several quantum control methods presented in this manuscript.
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Department of Physical Chemistry, University of the Basque Country UPV/EHU, Apartado 644, BilbaoDepartment of Physical Chemistry, University of the Basque Country UPV/EHU, Apartado 644, Bilbao
Lamata L.
Mezzacapo A.
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Department of Physical Chemistry, University of the Basque Country UPV/EHU, Apartado 644, BilbaoDepartment of Physical Chemistry, University of the Basque Country UPV/EHU, Apartado 644, Bilbao
Mezzacapo A.
Casanova J.
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Department of Physical Chemistry, University of the Basque Country UPV/EHU, Apartado 644, BilbaoDepartment of Physical Chemistry, University of the Basque Country UPV/EHU, Apartado 644, Bilbao
Casanova J.
Solano E.
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Department of Physical Chemistry, University of the Basque Country UPV/EHU, Apartado 644, Bilbao
IKERBASQUE, Basque Foundation for Science, Alameda Urquijo 36, BilbaoDepartment of Physical Chemistry, University of the Basque Country UPV/EHU, Apartado 644, Bilbao