Bounds and enhancements for negative scattering time delays

J. G. Muga, I. L. Egusquiza, J. A. Damborenea, and F. Delgado
Phys. Rev. A 66, 042115 – Published 23 October 2002
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Abstract

The time of passage of the transmitted wave packet in a tunneling collision of a quantum particle with a square potential barrier becomes independent of the barrier width in a range of barrier thickness. This is the Hartman effect, which has been frequently associated with “superluminality.” A fundamental limitation on the effect is set by nonrelativistic “causality conditions.” We demonstrate first that the causality conditions impose more restrictive bounds on the negative time delays (time advancements) when no bound states are present. These restrictive bounds are in agreement with a naive, and generally false, causality argument based on the positivity of the “extrapolated phase time,” one of the quantities proposed to characterize the duration of the barrier’s traversal. Nevertheless, square wells may in fact lead to much larger advancements than square barriers. We point out that close to the thresholds of new bound states, the time advancement increases considerably, while, at the same time, the transmission probability is large, which facilitates the possible observation of the enhanced time advancement.

  • Received 26 June 2002

DOI:https://doi.org/10.1103/PhysRevA.66.042115

©2002 American Physical Society

Authors & Affiliations

J. G. Muga1, I. L. Egusquiza2, J. A. Damborenea2,1, and F. Delgado1,2

  • 1Departamento de Química-Física, Universidad del País Vasco, Apartadodo 644, Bilbao, Spain
  • 2Fisika Teorikoaren Saila, Euskal Herriko Unibertsitatea, 644 Posta Kutxa, 48080 Bilbao, Spain

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Vol. 66, Iss. 4 — October 2002

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