LO-phonon emission rate of hot electrons from an on-demand single-electron source in a GaAs/AlGaAs heterostructure

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dc.contributor.author Johnson, N.
dc.contributor.author Emary, C.
dc.contributor.author Ryu, S.
dc.contributor.author Sim, H.-S.
dc.contributor.author See, P.
dc.contributor.author Fletcher, J. D.
dc.contributor.author Griffiths, J. P.
dc.contributor.author Jones, G. A. C.
dc.contributor.author Farrer, I.
dc.contributor.author Ritchie, D. A.
dc.contributor.author Pepper, M.
dc.contributor.author Janssen, T. J. B. M.
dc.contributor.author Kataoka, M.
dc.date.accessioned 2025-01-31T11:37:04Z
dc.date.available 2025-01-31T11:37:04Z
dc.identifier.citation Johnson, N., Emary, C., Ryu, S., Sim, H. S., See, P., Fletcher, J. D., ... i Kataoka, M. (2018). LO-phonon emission rate of hot electrons from an on-demand single-electron source in a GaAs/AlGaAs heterostructure. Physical Review Letters, 121(137703), 137703.https://doi.org/10.1103/PhysRevLett.121.137703
dc.identifier.uri http://hdl.handle.net/11201/168441
dc.description.abstract [eng] Using a recent time-of-flight measurement technique with 1 ps time resolution and electron-energy spectroscopy, we develop a method to measure the longitudinal-optical-phonon emission rate of hot electrons traveling along a depleted edge of a quantum Hall bar. Comparison to a single-particle model implies the scattering mechanism involves a two-step process via an intra-Landau-level transition. We show that this can be suppressed by control of the edge potential profile, and a scattering length > 1 mm can be achieved, allowing the use of this system for scalable single-electron device applications.
dc.format application/pdf
dc.publisher American Physical Society
dc.relation.ispartof Physical Review Letters, 2018, vol. 121, num.137703
dc.rights all rights reserved
dc.subject.classification 53 - Física
dc.subject.other 53 - Physics
dc.title LO-phonon emission rate of hot electrons from an on-demand single-electron source in a GaAs/AlGaAs heterostructure
dc.type info:eu-repo/semantics/article
dc.type info:eu-repo/semantics/publishedVersion
dc.type Article
dc.date.updated 2025-01-31T11:37:04Z
dc.rights.accessRights info:eu-repo/semantics/openAccess
dc.identifier.doi https://doi.org/https://doi.org/10.1103/PhysRevLett.121.137703


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