Literature DB >> 22830617

Extreme sensitivity of the spin-splitting and 0.7 anomaly to confining potential in one-dimensional nanoelectronic devices.

A M Burke1, O Klochan, I Farrer, D A Ritchie, A R Hamilton, A P Micolich.   

Abstract

Quantum point contacts (QPCs) have shown promise as nanoscale spin-selective components for spintronic applications and are of fundamental interest in the study of electron many-body effects such as the 0.7 × 2e(2)/h anomaly. We report on the dependence of the 1D Landé g-factor g and 0.7 anomaly on electron density and confinement in QPCs with two different top-gate architectures. We obtain g values up to 2.8 for the lowest 1D subband, significantly exceeding previous in-plane g-factor values in AlGaAs/GaAs QPCs and approaching that in InGaAs/InP QPCs. We show that g is highly sensitive to confinement potential, particularly for the lowest 1D subband. This suggests careful management of the QPC's confinement potential may enable the high g desirable for spintronic applications without resorting to narrow-gap materials such as InAs or InSb. The 0.7 anomaly and zero-bias peak are also highly sensitive to confining potential, explaining the conflicting density dependencies of the 0.7 anomaly in the literature.

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Year:  2012        PMID: 22830617     DOI: 10.1021/nl301566d

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  2 in total

1.  Microscopic origin of the '0.7-anomaly' in quantum point contacts.

Authors:  Florian Bauer; Jan Heyder; Enrico Schubert; David Borowsky; Daniela Taubert; Benedikt Bruognolo; Dieter Schuh; Werner Wegscheider; Jan von Delft; Stefan Ludwig
Journal:  Nature       Date:  2013-08-28       Impact factor: 49.962

2.  Odd and even Kondo effects from emergent localization in quantum point contacts.

Authors:  M J Iqbal; Roi Levy; E J Koop; J B Dekker; J P de Jong; J H M van der Velde; D Reuter; A D Wieck; Ramón Aguado; Yigal Meir; C H van der Wal
Journal:  Nature       Date:  2013-08-28       Impact factor: 49.962

  2 in total

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