A model of magnetic impurities within the Josephson junction of a phase qubit
We consider a superconducting phase qubit consisting of a monocrystalline sapphire Josephson junction with its symmetry axis perpendicular to the junction interfaces. Via the London gauge, we present a theoretical model of Fe3+ magnetic impurities within the junction that describes the effect of a l...
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Veröffentlicht in: | Superconductor science & technology 2010-02, Vol.23 (2), p.025026-025026 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | We consider a superconducting phase qubit consisting of a monocrystalline sapphire Josephson junction with its symmetry axis perpendicular to the junction interfaces. Via the London gauge, we present a theoretical model of Fe3+ magnetic impurities within the junction that describes the effect of a low concentration of such impurities on the operation of the qubit. Specifically, we derive an interaction Hamiltonian expressed in terms of angular momentum states of magnetic impurities and low-lying oscillator states of a current-biased phase qubit. We discuss the coupling between the qubit and impurities within the model near resonance. When the junction is biased at an optimal point for acting as a phase qubit, with a phase difference of Delta *p/2 and impurity concentration no greater than 0.05%, we find only a slight decrease in the Q factor of less than 0.01%. |
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ISSN: | 0953-2048 1361-6668 |
DOI: | 10.1088/0953-2048/23/2/025026 |