Spin and negative differential conductance in the transport through a quantum dot in a magnetic field

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • M. C. Rogge
  • F. Cavaliere
  • M. Sassetti
  • R. J. Haug
  • B. Kramer

Organisationseinheiten

Externe Organisationen

  • Università degli studi di Genova (UniGe)
  • Universität Hamburg
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Details

OriginalspracheEnglisch
Seiten (von - bis)442-445
Seitenumfang4
FachzeitschriftPhysica E: Low-Dimensional Systems and Nanostructures
Jahrgang32
Ausgabenummer1-2 SPEC. ISS.
PublikationsstatusVeröffentlicht - 1 Mai 2006

Abstract

Results of combined experimental and theoretical studies of transport spectra of a quantum dot in a magnetic field are reported. In the linear regime, the observed oscillatory behavior of the conductance peaks with varying magnetic field is interpreted in terms of successive rearrangements in the electronic ground state configurations of Fock-Darwin energy levels. Spin-blockade related bimodal behavior is also observed in the peak intensities due to spin dependent tunneling. In the nonlinear regime, a regular pattern of negative differential conductance is detected. This is compared with different theoretical cases demonstrating a subtle interplay between spin dependent tunneling and source and drain resistance asymmetries.

ASJC Scopus Sachgebiete

Zitieren

Spin and negative differential conductance in the transport through a quantum dot in a magnetic field. / Rogge, M. C.; Cavaliere, F.; Sassetti, M. et al.
in: Physica E: Low-Dimensional Systems and Nanostructures, Jahrgang 32, Nr. 1-2 SPEC. ISS., 01.05.2006, S. 442-445.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Rogge MC, Cavaliere F, Sassetti M, Haug RJ, Kramer B. Spin and negative differential conductance in the transport through a quantum dot in a magnetic field. Physica E: Low-Dimensional Systems and Nanostructures. 2006 Mai 1;32(1-2 SPEC. ISS.):442-445. doi: 10.1016/j.physe.2005.12.086
Rogge, M. C. ; Cavaliere, F. ; Sassetti, M. et al. / Spin and negative differential conductance in the transport through a quantum dot in a magnetic field. in: Physica E: Low-Dimensional Systems and Nanostructures. 2006 ; Jahrgang 32, Nr. 1-2 SPEC. ISS. S. 442-445.
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AU - Rogge, M. C.

AU - Cavaliere, F.

AU - Sassetti, M.

AU - Haug, R. J.

AU - Kramer, B.

N1 - Funding information: Financial support by the German BMBF, the EU (HPRN-CT2000-0144, MCRTN-CT2003-504574) is acknowledged.

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AB - Results of combined experimental and theoretical studies of transport spectra of a quantum dot in a magnetic field are reported. In the linear regime, the observed oscillatory behavior of the conductance peaks with varying magnetic field is interpreted in terms of successive rearrangements in the electronic ground state configurations of Fock-Darwin energy levels. Spin-blockade related bimodal behavior is also observed in the peak intensities due to spin dependent tunneling. In the nonlinear regime, a regular pattern of negative differential conductance is detected. This is compared with different theoretical cases demonstrating a subtle interplay between spin dependent tunneling and source and drain resistance asymmetries.

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