Designing Hyperchaos and Intermittency in Semiconductor Superlattices

E. Mompó, M. Carretero, and L. L. Bonilla
Phys. Rev. Lett. 127, 096601 – Published 25 August 2021
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Abstract

Weakly coupled semiconductor superlattices under dc voltage bias are excitable systems with many degrees of freedom that may exhibit spontaneous chaos at room temperature and act as fast physical random number generator devices. Superlattices with identical periods exhibit current self-oscillations due to the dynamics of charge dipole waves but chaotic oscillations exist on narrow voltage intervals. They disappear easily due to variation in structural growth parameters. Based on numerical simulations, we predict that inserting two identical sufficiently separated wider wells increases superlattice excitability by allowing wave nucleation at the modified wells and more complex dynamics. This system exhibits hyperchaos and varieties of intermittent chaos in extended dc voltage ranges. Unlike in ideal superlattices, our chaotic attractors are robust and resilient against noises and against controlled random disorder due to growth fluctuations.

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  • Received 26 April 2021
  • Accepted 30 July 2021

DOI:https://doi.org/10.1103/PhysRevLett.127.096601

© 2021 American Physical Society

Physics Subject Headings (PhySH)

Nonlinear DynamicsCondensed Matter, Materials & Applied Physics

Authors & Affiliations

E. Mompó, M. Carretero, and L. L. Bonilla*

  • Gregorio Millán Institute for Fluid Dynamics, Nanoscience and Industrial Mathematics, and Department of Mathematics, Universidad Carlos III de Madrid, 28911 Leganés, Spain

  • *Corresponding author. bonilla@ing.uc3m.es

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Issue

Vol. 127, Iss. 9 — 27 August 2021

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