Magnetic impurity formation in quantum point contacts
arXiv:cond-mat/0609391 · doi:10.1038/nature05054
Abstract
A quantum point contact (QPC), a narrow region separating two wider electron reservoirs, is the standard building block of sub-micron devices, such as quantum dots - small boxes of electrons, and qubits - the proposed basic elements of quantum computers. As a function of its width, the conductance through a QPC changes in integer steps of G0 = , signalling the quantization of its tranverse modes.1,2 Such measurements also reveal an additional shoulder at a value around 0.7, an observation which remains a puzzle even after more than a decade. Recently it has been suggested5,6 that this phenomenon can be explained if one invokes the existence of a magnetic impurity in the QPC at low densities. Here we present extensive numerical density-functional calculations that reveal the formation of a magnetic moment in the channel as the density increases above pinch-off, under very general conditions. In addition we show that such an impurity will also form at large magnetic fields, for a specific value of the field (corresponding to a degeneracy point between the upper spin state in the first mode and the lower spin state in the second mode), and sometimes even at the opening of the second mode in the QPC. Beyond explaining the source of the "0.7 anomaly", these results may have far reaching implications on spin filling of electronic states in quantum dots and on dephasing of quantum information stored in semiconductor qubits.
preprint version of a paper published in Nature
Cited by in corpus (41)
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- Probing the microscopic structure of bound states in quantum point contacts
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- Detection of spin polarized currents in quantum point contacts via transverse electron focusing
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- 0.7 Structure and Zero Bias Anomaly in Ballistic Hole Quantum Wires
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- The influence of device geometry on many-body effects in quantum point contacts: Signatures of the 0.7 anomaly, exchange and Kondo
- Realistic modelling of quantum point contacts subject to high magnetic fields and with current bias at out of linear response regime
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- Electronic magnetization of a quantum point contact measured by nuclear magnetic resonance
- Statistical study of conductance properties in one-dimensional quantum wires focussing on the 0.7 anomaly
- Detector Backaction on the Self-Consistent Bound State in Quantum Point Contacts
- Extreme sensitivity of the spin-splitting and 0.7 anomaly to confining potential in one-dimensional nanoelectronic devices
- Conductance Anomaly and Fano Factor Reduction in Quantum Point Contacts
- Tuning the Fano Resonance with an Intruder Continuum
- Quantum phase transition in quantum wires controlled by an external gate
- Length-Dependent Conductance of a Spin-Incoherent Hubbard chain; Monte Carlo Calculations
- The theory of the "0.7 anomaly" in quantum point contacts
- Suppression of Shot Noise in Quantum Point Contacts in the "0.7" Regime
- Electronic transport in inhomogeneous quantum wires
- Dependence of the 0.7 anomaly on the curvature of the potential barrier in quantum wires
- Fractional quantization of ballistic conductance in 1D hole systems
- Split-gate quantum point contacts with tunable channel length
- Analysis of the Kondo effect in ferromagnetic atomic-sized contacts
- Thermoelectrics of a two-channel charge Kondo circuit: Role of electron-electron interactions in a quantum point contact
- Theory of NMR in semiconductor quantum point contact devices
- Capacitive interactions and Kondo effect tuning in double quantum impurity systems
- Formation mechanism of bound states in graphene point contacts
- Dephasing in a quantum dot coupled to a quantum point contact
- Where are the edge-states near the quantum point contacts? A self-consistent approach
- Tuning Fano-type resonances in coupled quantum point contacts by applying asymmetric voltages
- Nuclear magnetic resonance probes for the Kondo scenario for the 0.7 feature in semiconductor quantum point contact devices
- Entanglement and transport anomalies in nanowires
- Mechanism of electron localization in a quantum wire
- In-plane gate induced transition asymmetry of spin-resolved Landau levels in InAs-based quantum wells
- On-chip quantum sensing of Kondo spins in a high-mobility quasi-one-dimensional nanoconstriction