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Trapped Ion Quantum Computing
Quantum Simulation
Proposal for high-fidelity quantum simulation using a hybrid dressed state
arXiv
Authors: Jianming Cai, Itsik Cohen, Alex Retzker, Martin B. Plenio
Year
2015
Paper ID
26500
Status
Preprint
Abstract Read
~2 min
Abstract Words
164
Citations
N/A
Abstract
A fundamental goal of quantum technologies concerns the exploitation of quantum coherent dynamics for the realisation of novel quantum applications such as quantum computing, quantum simulation, and quantum metrology. A key challenge on the way towards these goals remains the protection of quantum coherent dynamics from environmental noise. Here, we propose a concept of hybrid dressed state from a pair of continuously driven systems. It allows sufficiently strong driving fields to suppress the effect of environmental noise, while at the same time being insusceptible to both the amplitude and phase noise in the continuous driving fields. This combination of robust features significantly enhances coherence times under realistic conditions, and at the same time provides new flexibility in Hamiltonian engineering that otherwise is not achievable. We demonstrate theoretically applications of our scheme for noise resistant analog quantum simulation in the well studied physical systems of nitrogen-vacancy centers in diamond and of trapped ions. The scheme may also be exploited for quantum computation and quantum metrology.
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- This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
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- A fundamental goal of quantum technologies concerns the exploitation of quantum coherent dynamics for the realisation of novel quantum applications such as quantum computing...
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