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February 14, 2026Open Access

NEW DIFFUSION-MOBILITY-VISCOSITY-ACTIVATION ENERGY-FERMI ENERGY RELATIONS, INVESTIGATED IN N(P)-TYPE DEGENERATE (OR VISCOUS) GaSb(1-x) Te(x)-CRYSTALLINE ALLOY, SUGGESTING A DEGENERACY-AND-VISCOSITY EQUIVALENCE CONCEPT (XXI)

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Authors

HTH. Van Cong*, O. Coquand, V. A. T. Nguyen, S. Dumont, P. Blaise, M. Cayrol, V. L'Henaff, N. Tahri-Roe

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Overview

Analytical approach reveals conductivity relations in a degenerate GaSb-Te crystalline alloy, suggesting an equivalence concept.

Key Points

  • This research aims to explore the interrelations among diffusion, mobility, viscosity, activation energy, and Fermi energy in degenerate crystalline alloys.
  • Investigated optical and electrical laws and relevant relations in crystalline alloys.
  • Developed conductivity models based on recent works and mathematical treatments.
  • Analyzed samples with varying compositions, particularly for x=0 (1) in GaSb(1-x)Te(x).
  • Established relationships between diffusion, mobility, viscosity, and activation energy in the alloy.
  • Identified correlation between optical and electrical conductivity derived from different phenomena.
  • Numerical results presented in specified tables support the theoretical models.

Cite This Study

H. Van Cong*, O. Coquand, V. A. T. Nguyen, S. Dumont, P. Blaise, M. Cayrol, V. L'Henaff, N. Tahri-Roe (2026) studied this question.

synapsesocial.com/papers/6990113f2ccff479cfe57bfehttps://doi.org/10.5281/zenodo.18620390
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