Applied Physics Letters · 2009 · 50 citations · 10 references
Materials ScienceLow Thermal ConductivityElectrical EngineeringElectronic DevicesNanometer Scale Ge2sb2te5EngineeringNanoelectronicsThermal TransportApplied PhysicsCondensed Matter PhysicsConductivity ReductionsSemiconductor MaterialSemiconductor MemoryThermal ConductionPhase-change MaterialPhase Change MemoryThermal Conductivity
Nanometer scale Ge2Sb2Te5 (GST) domains formed by immiscible mixture of GST-SiOx at room temperature and 180 °C show remarkable suppression in electrical and thermal conductivity. Thermal boundary resistance with increased GST-SiOx interface becomes crucial to the reduction in thermal conductivity. These conductivity reductions concurrently result in the reduction in programming current and power consumption in phase change memory devices.
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David G. Cahill, W. K. Ford, Kenneth E. Goodson et al. · Journal of Applied Physics · 2003 · 3.1K citations · Full text
Ed Swartz, R. O. Pohl · Reviews of Modern Physics · 1989 · 2.8K citations
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Thermal conductivity of phase-change material Ge2Sb2Te5
Ho-Ki Lyeo, David G. Cahill, Bong-Sub Lee et al. · Applied Physics Letters · 2006 · 301 citations
Materials Engineering, Materials Science, Phase-change Material +11