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Öğe Optical properties of high pressure phases in ZnTe1-xSex(Taylor & Francis Ltd, 2002) Sotto, A; Güder, HS; Pérez-Pastor, A; Segura, A; Muñoz, V; Muñoz, A; Qteish, AWe report on the optical properties of high pressure semiconducting phases in ZnTe1-xSex. In the Te rich side, the cinnabar phase is observed in the upstroke between typically 9.5 and 12.5 GPa with a pressure interval of existence that decreases with increasing the Se content. In most studied samples, the indirect absorption edge could be determined, with values of the bandgap increasing with the Se content and ranging from 1.2 to 1.7 eV In the downstroke, the cinnabar phase is observed in the whole composition range but its bandgap can not be unambiguously determined in the Se-rich side, as it coexists with rocksalt or zincblende phases. The indirect semiconducting rocksalt phase is observed in the Se-rich side, with an indirect bandgap of the order of 0.7 eV. Within the experimental errors, the bandgaps of both the cinnabar and NaCl phases are pressure insensitive, in agreement with first-principles pseudopotential band structure calculations, that predict very low pressure coefficients for both indirect transitions.Öğe Pressure dependence of the bandgap bowing in zinc-blende ZnTe1-xSex(Taylor & Francis Ltd, 2002) Sotto, A; Güder, HS; Pérez-Pastor, A; Segura, A; Zúñiga, J; Muñoz, VWe report on the pressure dependence of the bandgap bowing in the ZnTe1-xSex alloy, in the whole composition range. The bandgap bowing parameter is shown to increase almost linearly with pressure from 1.23 at ambient pressure to 1.6 at 7 GPa. Saturation effects observed in the pressure dependence for x = 0.1 and x = 0.2 are shown to be related to the direct-to-indirect crossover. Results are discussed and interpreted in the framework of structural relaxation models for gap bowing. A prediction of these models (the negative bowing of the Gamma(15) - X-1 transition) is shown to be compatible with the fact that the direct-to-indirect crossover pressure increases with the Se content.