Further results on sampled-data design for robust control of a single qubit
Author(s)
Wang, Yuanlong
Chen, Chunlin
Dong, Daoyi
Griffith University Author(s)
Year published
2014
Metadata
Show full item recordAbstract
This paper presents further results on the robust control method for qubit systems in Dong et al. (2013). Based on the properties of an antisymmetric system, an alternative method is presented to analyse and exclude singularity intervals in the proof of partial original results. For the case of amplitude damping decoherence, a larger sampling period is presented when the upper bound of the probability of failure is small enough. For the case of phase damping decoherence, a larger sampling period is given when the lower bound of the target coherence is large enough. Furthermore, we provide improved sampling periods for amplitude ...
View more >This paper presents further results on the robust control method for qubit systems in Dong et al. (2013). Based on the properties of an antisymmetric system, an alternative method is presented to analyse and exclude singularity intervals in the proof of partial original results. For the case of amplitude damping decoherence, a larger sampling period is presented when the upper bound of the probability of failure is small enough. For the case of phase damping decoherence, a larger sampling period is given when the lower bound of the target coherence is large enough. Furthermore, we provide improved sampling periods for amplitude damping decoherence and phase damping decoherence without the above prior constraints.
View less >
View more >This paper presents further results on the robust control method for qubit systems in Dong et al. (2013). Based on the properties of an antisymmetric system, an alternative method is presented to analyse and exclude singularity intervals in the proof of partial original results. For the case of amplitude damping decoherence, a larger sampling period is presented when the upper bound of the probability of failure is small enough. For the case of phase damping decoherence, a larger sampling period is given when the lower bound of the target coherence is large enough. Furthermore, we provide improved sampling periods for amplitude damping decoherence and phase damping decoherence without the above prior constraints.
View less >
Journal Title
International Journal of Control
Volume
87
Issue
10
Subject
Applied mathematics
Mechanical engineering
Science & Technology
Automation & Control Systems
quantum control
qubit