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Volumn 77, Issue 4, 2008, Pages

Spin qubits in antidot lattices

Author keywords

[No Author keywords available]

Indexed keywords


EID: 38549173689     PISSN: 10980121     EISSN: 1550235X     Source Type: Journal    
DOI: 10.1103/PhysRevB.77.045325     Document Type: Article
Times cited : (14)

References (31)
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    • In practice, reliable single-electron filling may pose a serious experimental challenge which could require further optimization of the architecture presented here.
    • In practice, reliable single-electron filling may pose a serious experimental challenge which could require further optimization of the architecture presented here.
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    • Another experimental challenge relates to the RC switching time of the back gate which grows with length, making it harder to control on short time scales.
    • Another experimental challenge relates to the RC switching time of the back gate which grows with length, making it harder to control on short time scales.
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    • Because we use an expansion in localized single-particle product states our method is most reliable for systems with several localized single-particle states. We consequently focus on relative antidot diameters above the single-level regime of the single defects (d Λ>0.42), see Fig. 3.
    • Because we use an expansion in localized single-particle product states our method is most reliable for systems with several localized single-particle states. We consequently focus on relative antidot diameters above the single-level regime of the single defects (d Λ>0.42), see Fig. 3.


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