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Group IV Nanomembranes, Nanoribbons, and Quantum Dots: Processing, Characterization, and Novel Devices, Reporting Period: February 1, 2003-April 30, 2013.


DE141150736

Publication Date 2003
Personal Author Liu, F.
Page Count 4
Abstract This theoretical project has been carried out in close interaction with the experimental project at UW-Madison under the same title led by PI Max Lagally and co-PI Mark Eriksson. Extensive computational studies have been performed to address a broad range of topics from atomic structure, stability, mechanical property, to electronic structure, optoelectronic and transport properties of various nanoarchitectures in the context of Si and other solid nanomembranes. These have been done by using combinations of different theoretical and computational approaches, ranging from first-principles calculations and molecular dynamics (MD) simulations to finite-element (FE) analyses and continuum modeling.
Keywords
  • Quantum dots
  • Electronic structures
  • Finite element analysis
  • Information processing
  • Mechanical properties
  • Molecular dynamics
  • Nanomembranes
  • Optoelectronics
  • Stability
Source Agency
  • Technical Information Center Oak Ridge Tennessee
NTIS Subject Category
  • 46 - Physics
  • 71 - Materials Sciences
Corporate Authors Utah Univ., Salt Lake City.; Department of Energy, Washington, DC.
Supplemental Notes Sponsored by Department of Energy, Washington, DC.
Document Type Technical Report
NTIS Issue Number 201503
Contract Number
  • DE-FG02-03ER46027
Group IV Nanomembranes, Nanoribbons, and Quantum Dots: Processing, Characterization, and Novel Devices, Reporting Period: February 1, 2003-April 30, 2013.
Group IV Nanomembranes, Nanoribbons, and Quantum Dots: Processing, Characterization, and Novel Devices, Reporting Period: February 1, 2003-April 30, 2013.
DE141150736

  • Quantum dots
  • Electronic structures
  • Finite element analysis
  • Information processing
  • Mechanical properties
  • Molecular dynamics
  • Nanomembranes
  • Optoelectronics
  • Stability
  • Technical Information Center Oak Ridge Tennessee
  • 46 - Physics
  • 71 - Materials Sciences
  • DE-FG02-03ER46027
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