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Effective nonlinear model of resonant tunneling nanostructures

dc.contributor.authorDíez Gutiérrez, Enrique Javier
dc.contributor.authorSánchez, Angel
dc.contributor.authorDomínguez-Adame Acosta, Francisco
dc.date.accessioned2023-06-20T20:16:14Z
dc.date.available2023-06-20T20:16:14Z
dc.date.issued1996-05-27
dc.description© Elsevier B.V. or its licensors or contributors. We are very thankful to Paco Padilla and Alan R. Bishop for useful discussions. This work is supported from CICYT (Spain) through project No. MAT95-0325.
dc.description.abstractWe introduce a model of a nonlinear double-barrier structure to describe in a simple way the effects of electron-electron scattering while remaining analytically tractable. The model is based on a generalized effective-mass equation where a nonlinear local field interaction is introduced to account for those inelastic scattering phenomena. Resonance peaks seen in the transmission coefficient spectra for the linear case appear shifted to higher energies depending on the magnitude of the nonlinear coupling. Our results are in good agreement with self-consistent solutions of the Schrodinger and Poisson equations. The calculation procedure is seen to be very fast, which makes our technique a good candidate for a rapid approximate analysis of these structures.
dc.description.departmentDepto. de Física de Materiales
dc.description.facultyFac. de Ciencias Físicas
dc.description.refereedTRUE
dc.description.sponsorshipComisión Interministerial de Ciencia y Tecnología (CICYT), España
dc.description.statuspub
dc.eprint.idhttps://eprints.ucm.es/id/eprint/37915
dc.identifier.doi10.1016/0375-9601(96)00202-2
dc.identifier.issn0375-9601
dc.identifier.officialurlhttp://dx.doi.org/10.1016/0375-9601(96)00202-2
dc.identifier.relatedurlhttp://www.sciencedirect.com/
dc.identifier.relatedurlhttp://arxiv.org/abs/cond-mat/9602098v1
dc.identifier.urihttps://hdl.handle.net/20.500.14352/59983
dc.issue.number1-2
dc.journal.titlePhysics letters A
dc.language.isoeng
dc.page.final107
dc.page.initial103
dc.publisherElsevier
dc.relation.projectIDMAT95-0325
dc.rights.accessRightsopen access
dc.subject.cdu538.9
dc.subject.keywordPropagation
dc.subject.keywordWaves
dc.subject.ucmFísica de materiales
dc.titleEffective nonlinear model of resonant tunneling nanostructures
dc.typejournal article
dc.volume.number215
dcterms.references[1] T. C. L. G. Sollner, W. D. Goodhue, P. E. Tannenwald, C. D. Parker, and D. D. Peck, Appl. Phys. Lett. 43, 588 (1984). [2] B. Ricco and M. Ya. Azbel, Phys. Rev. B 29, 1970 (1984). [3] C. Presilla, G. Jona-Lasinio, and F. Capasso, Phys. Rev. B 43, 5200 (1991) [4] G. Jona-Lasinio, C. Presilla, and F. Capasso, Phys. Rev. Lett. 68, 2269 (1992). [5] G. Jona-Lasinio, C. Presilla, and J. Sj¨ostrand, Annals of Physics 240, 1 (1995). [6] N. G. Sun and G. P. Tsironis, Phys. Rev. B 51, 11 221 (1995). [7] L. Wang, J. K. Zhang and A. R. Bishop, Phys. Rev. Lett. 74, 4710 (1995). [8] J. Callaway, Quantum Theory of the Solid State (Academic Press, CA, 1991), p 711. [9] R. Knapp, G. Papanicolaou, and B. White, J. Stat. Phys. 63, 567 (1991). [10] E. Cota and S. E. Ulloa, Phys. Rev. B 51, 10 875 (1995). [11] M. S. Sherwin, K. Craig, B. Galdrikian, J. Heyman, A. Markelz, K. Campman, S. Fafard, P. F. Hopkins, and A. Gossard, Physica D 83, 229 (1995). [12] G. Bastard, Wave mechanics applied to semiconductor heterostructures (Les Editions de Physique, France, 1988), p 161. [13] A. Sánchez and L. Vázquez, Int. J. Mod. Phys. B 5, 2825 (1991); S. A. Gredeskul and Yu. S. Kivshar, Phys. Rep. 216, 1 (1992); E. Diez, F. Domínguez-Adame, and A. Sánchez, Phys. Lett. A 198, 403 (1995).
dspace.entity.typePublication
relation.isAuthorOfPublicationdbc02e39-958d-4885-acfb-131220e221ba
relation.isAuthorOfPublication.latestForDiscoverydbc02e39-958d-4885-acfb-131220e221ba

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