4.6 Article

Effect of structural disorder on the Urbach energy in Cu ternaries -: art. no. 195101

Journal

PHYSICAL REVIEW B
Volume 64, Issue 19, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.64.195101

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From the analysis of the Urbach tail in CuInSe2 and CuInTe2, it is found that the energy h nu (p) involved in the electron-exciton-phonon interaction is not that of the ordered compound longitudinal or transverse optical modes. It is established that this energy depends on the structural and cations disorders. An expression of the form E-v(T,P,N) = K Theta/sigma (0){(1 + P)/2+N[exp(Theta /T)-1](-1)}, where P and N are adjustable structural and order-disorder parameters and Theta the Einstein characteristic temperature, accurately explains the temperature dependence of the Urbach energy. From extrapolation of the linear variation of Nand P with h nu (p), the phonon energy for a completely ordered and disordered systems can be estimated. We discuss the physical meaning of the parameter N as due to the contribution of localized modes produced by substitutional disorder of low energy of formation. We find an intriguing relation between the temperature of the chalcopyrite-sphalerite transition and the phonons contributing to the formation of Urbach tails in the strong-disorder limit.

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