arXiv · 2206.06502
Time optimal holonomic quantum computation
Abstract
A three-level system can be used in a $\Lambda$-type configuration in order to construct a universal set of quantum gates through the use of non-Abelian non-adiabatic geometrical phases. Such construction allows for high-speed operation times which diminish the effects of decoherence. This might be, however, accompanied by a breakdown of the validity of the rotating wave approximation (RWA) due to the comparable time scale between counter-rotating terms and the pulse length, which greatly affects the dynamics. Here, we investigate the trade-off between dissipative effects and the RWA validity, obtaining the optimal regime for the operation of the holonomic quantum gates.
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Gabriel O. Alves, Erik Sjöqvist. 2022-06-13. Time optimal holonomic quantum computation. https://doi.org/10.1103/physreva.106.032406
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