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Description
  • Semiconductor chips in contemporary micro- and optoelectronics are complicated objects. There are various approaches to express this complexity. The one presented here is based on the notion of the entropy of mixing and is termed the configuration entropy. It is a functional of the concentration profile and of the layer growth law. Theoretical concepts are illustrated on the concrete case of the growth of a heterostructure in the AlGaAs material system.
  • Semiconductor chips in contemporary micro- and optoelectronics are complicated objects. There are various approaches to express this complexity. The one presented here is based on the notion of the entropy of mixing and is termed the configuration entropy. It is a functional of the concentration profile and of the layer growth law. Theoretical concepts are illustrated on the concrete case of the growth of a heterostructure in the AlGaAs material system. (en)
Title
  • Thermodynamic complexity measure for semiconductor heterostructures.
  • Thermodynamic complexity measure for semiconductor heterostructures. (en)
skos:prefLabel
  • Thermodynamic complexity measure for semiconductor heterostructures.
  • Thermodynamic complexity measure for semiconductor heterostructures. (en)
skos:notation
  • RIV/67985882:_____/00:13000085!RIV/2003/AV0/A13003/N
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  • 219;222
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  • P(GA102/99/0341), Z(AV0Z2067918)
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  • 729284
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  • RIV/67985882:_____/00:13000085
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  • N/A (en)
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  • [1C3BAC8ED278]
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  • Smolenice [SK]
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  • Piscataway
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  • ASDAM 2000. Conference Proceedings of the 3rd International Euro Conference on Advanced Semiconductor Devices and Microsystems.
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  • Šrobár, Fedor
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number of pages
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  • IEEE
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  • 0-7803-5939-9
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