Zugriffsnummer 24909
Dokumenttyp Zeitschriftenartikel
Sprache Englisch
Titel Universal decay cascade model for dynamic quantum dot initialization
Autor(in); Institution
Kashcheyevs, Vyacheslavs; University of Lativa, Faculty of Computing, Riga, LATVIA; University of Latvia, Faculty of Physics and Mathematics, Riga, LATVIA
Kästner, Bernd; 2.5, Halbleiterphysik und Magnetismus, PTB-Braunschweig
Quelle/Jahr Physical Review Letters: 104 (2010), 186805-1 - 186805-4
ISSN 0031-9007
DOI
Verlag Ridge, NY: American Physical Society
Klassifikationscode PACS: 73.63.Kv ; PACS: 73.21.La ; PACS: 73.22.Dj ; PACS: 73.23.Hk
Zusammenfassung Dynamic quantum dots can be formed by time-dependent electrostatic potentials, such as in gate- or surface-acoustic-wave-driven electron pumps. In this work we propose and quantify a scheme to initialize quantum dots with a controllable number of electrons. It is based on a rapid increase of the electron potential energy and simultaneous decoupling from the source lead. The full probability distribution for the final number of captured electrons is obtained by solving a master equation for stochastic cascade of single electron escape events. We derive an explicit fitting formula to extract the sequence of decay rate ratios from the measurements of averaged current in a periodically driven device. This provides a devicespecific fingerprint which allows us to compare different architectures, and predict the upper limits of initialization accuracy from low precision measurements.

Zitierung

Kashcheyevs, V. & Kästner, B. (2010). Universal decay cascade model for dynamic quantum dot initialization. Physical Review Letters, 104, 186805-1–186805-4. https://doi.org/10.1103/physrevlett.104.186805

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