Publication | Open Access
High-pressure optical and vibrational properties of CdGa2Se4: Order-disorder processes in adamantine compounds
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Citations
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References
2012
Year
Optical MaterialsEngineeringDc PhaseVibrational PropertiesSpectroscopic PropertySemiconductorsIi-vi SemiconductorOptical PropertiesQuantum MaterialsPressure CyclesOrder-disorder ProcessesMaterials ScienceCrystalline DefectsPhysicsHigh-pressure Optical AbsorptionSolid-state PhysicTransition Metal ChalcogenidesApplied PhysicsCondensed Matter PhysicsAdamantine Compounds
High-pressure optical absorption and Raman scattering measurements have been performed in defect chalcopyrite (DC) CdGa2Se4 up to 22 GPa during two pressure cycles to investigate the pressure-induced order-disorder phase transitions taking place in this ordered-vacancy compound. Our measurements reveal that on decreasing pressure from 22 GPa, the sample does not revert to the initial phase but likely to a disordered zinc blende (DZ) structure the direct bandgap and Raman-active modes of which have been measured during a second upstroke. Our measurements have been complemented with electronic structure and lattice dynamical ab initio calculations. Lattice dynamical calculations have helped us to discuss and assign the symmetries of the Raman modes of the DC phase. Additionally, our electronic band structure calculations have helped us in discussing the order-disorder effects taking place above 6–8 GPa during the first upstroke.
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