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- W2003187890 abstract "This chapter concentrates on theories of the band structures and crystal structural properties of zinc blende-structured II–VI compounds and their alloys. It focuses on CdTe-based materials, in particular Hg(1–x)CdxTe. CdTe is a member of the IIB–VI group of semiconductors whose diverse optical and electrical properties make them excellent candidates for optoelectronic and spintronic applications. A large portion of their properties is directly related to the interaction of the localized semicore d electrons with the valence sp electrons. Elastic stiffness tensor components for CdTe single crystals measured between 77 and 300 K using ultrasonic or resonance frequency methods are fairly consistent and these are consistent with values obtained using computational means and from microindentation measurements. Further critical-resolved shear stress (CRSS) versus temperature for CdTe single crystals shows considerable scatter among results reported in the literature. Some of this scatter can be reduced by accounting for strain rate and multiple slip. Alloying of CdTe with Zn elevates the CRSS considerably. Fracture toughness of CdTe single crystals is lower than for Si and GaAs, with measured and predicted fracture energies in the range of 0.15–0.78 J/m2. Optoelectronic-mechanical couplings include: dependence of flow stress on illumination intensity; direct bandgap energy dependence on hydrostatic pressure; valence band splitting dependence on principal stress difference. The latter gives rise to stress dependent birefringence." @default.
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- W2003187890 date "1982-04-01" @default.
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- W2003187890 title "Influence of strain aging on the strain-rate sensitivity of the flow stress" @default.
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- W2003187890 doi "https://doi.org/10.1016/0036-9748(82)90156-9" @default.
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