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arxiv: 1208.0241 · v2 · pith:NDVOCCZPnew · submitted 2012-08-01 · ❄️ cond-mat.mes-hall

Anomalous magnetotransport through reflection-symmetric artificial molecules

classification ❄️ cond-mat.mes-hall
keywords reflection-symmetriccurrentevenfindharmonicsmagnetotransportaccountingaharonov-bohm
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We calculate magnetotransport oscillations in current through a triple-quantum-dot molecule, accounting for higher harmonics (having flux period h/ne, with n an integer). For a reflection-symmetric triple quantum dot, we find that harmonics with n odd can dominate over those with n even. This is opposite to the behavior theoretically predicted due to `dark-state' localization, but has been observed in recent experiments [L. Gaudreau et al., Phys. Rev. B, 80, 075415 (2009)], albeit in a triple-dot that may not exhibit reflection symmetry. This feature arises from a more general result: In the weak-coupling limit, we find that the current is flux-independent for an arbitrary reflection-symmetric Aharonov-Bohm network. We further show that these effects are observable in nanoscale systems even in the presence of typical dephasing sources.

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