Preservation of Quantum Fisher Information and Geometric Phase of a Single Qubit System in a Dissipative Reservoir Through the Addition of Qubits
In this paper, we have investigated the preservation of quantum Fisher information (QFI) of a single-qubit system coupled to a common zero temperature reservoir through the addition of noninteracting qubits. The results show that, the QFI is completely protected in both Markovian and non-Markovian r...
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Veröffentlicht in: | International journal of theoretical physics 2018-04, Vol.57 (4), p.1013-1023 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | In this paper, we have investigated the preservation of quantum Fisher information (QFI) of a single-qubit system coupled to a common zero temperature reservoir through the addition of noninteracting qubits. The results show that, the QFI is completely protected in both Markovian and non-Markovian regimes by increasing the number of additional qubits. Besides, the phenomena of QFI display monotonic decay or non-monotonic with revival oscillations depending on the number of additional qubits
N
− 1 in a common dissipative reservoir. If
N
<
N
c
(a critical number depending on the reservoirs parameters), the behavior of QFI with monotonic decay occurs. However, if
N
≥
N
c
, QFI exhibits non-monotonic behavior with revival oscillations. Moreover, we extend this model to investigate the effect of additional qubits and the initial conditions of the system on the geometric phase (GP). It is found that, the robustness of GP against the dissipative reservoir has been demonstrated by increasing gradually the number of additional qubits
N
− 1. Besides, the GP is sensitive to the initial parameter
θ
, and possesses symmetric in a range regime [0,2
π
]. |
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ISSN: | 0020-7748 1572-9575 |
DOI: | 10.1007/s10773-017-3634-x |