Refocusing two-qubit-gate noise for trapped ions by composite pulses
Autor: | Itsik Cohen, Alex Retzker, Amit Rotem |
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Rok vydání: | 2016 |
Předmět: |
Physics
Quantum Physics Dynamical decoupling FOS: Physical sciences Fault tolerance 01 natural sciences Bottleneck 010305 fluids & plasmas Ion Term (time) Computer Science::Hardware Architecture Noise Computer Science::Emerging Technologies Qubit 0103 physical sciences Electronic engineering Quantum Physics (quant-ph) 010306 general physics Ultrashort pulse |
Zdroj: | Physical Review A. 93 |
ISSN: | 2469-9934 2469-9926 |
DOI: | 10.1103/physreva.93.032340 |
Popis: | Amplitude noise which inflicts a random two qubit term is one of the main obstacles preventing the implementation of a high fidelity two-body gate below the fault tolerance threshold. This noise is difficult to refocus as any refocusing technique could only tackle noise with frequency below the operation rate. Since the two qubit gate speed is normally the slowest rate in the system, it constitutes the last bottleneck towards an implementation of a gate below the fault tolerant threshold. Here we propose to use composite pulses as a dynamical decoupling approach, in order to reduce two qubit gate noise for trapped ions systems. This is done by refocusing the building blocks of ultrafast entangling gates, where the amplitude noise is reduced to shot-to-shot (STS) noise. We present detailed simulations showing that the fault-tolerance threshold could be achieved with the proposed approach. |
Databáze: | OpenAIRE |
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