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Electrostatic spin control in InAs/InP nanowire quantum dots.

Nano letters (2012-08-02)
Lorenzo Romeo, Stefano Roddaro, Alessandro Pitanti, Daniele Ercolani, Lucia Sorba, Fabio Beltram
RÉSUMÉ

Very robust voltage-controlled spin transitions in few-electron quantum dots are demonstrated. Two lateral-gate electrodes patterned on opposite sides of an InAs/InP nanowire are used to apply a transverse electric field and tune orbital energy separation down to level-pair degeneracy. Transport measurements in this regime allow us to demonstrate the breakdown of the standard alternate up/down spin filling scheme and unambiguously show singlet-triplet spin transitions. The strong confinement of the present devices leads to a large energy gain for the observed anomalous spin configurations that exceeds 4 meV. As a consequence, this behavior is well visible even at temperatures exceeding T = 20 K.

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Indium(III) phosphide, pieces, 3-20 mesh, 99.998% trace metals basis