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介观物理与纳米电子学导论 选课指南


CMMP 2010:
CMMP 2010:
Six Scientific Challenges for the Next Decade 1. 2. 3.
(How Do Complex Phenomena Emerge from Simple Ingredients? ) (How Will the Energy Demands of Future Generations Be Met ?) (What Is the Physics of Life?) (What Happens Far from Equilibrium and Why?)
2007 Penryn Core 01 29 10:52 0.045 PC Donna Penryn
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CMMP 2010: Six Scientific Challenges for the Next Decade
1. How Do Complex Phenomena Emerge from Simple Ingredients? 2. How Will the Energy Demands of Future Generations Be Met ? 3. What Is the Physics of Life? 4. What Happens Far from Equilibrium and Why? 5. What New Discoveries Await Us in the Nanoworld? 6. How Will the Information Technology Revolution Be Extended?
Fortran
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2002
2001 2000 1995

2003 2003 2000 2004
• S. Maekawa, T. Shinjo, Ed., Spin Dependent Transport in Magnetic Nanostructures, 2002, Taylor and Francis
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2005-08-12 09:38:33
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Lee de Forest, 1873-1961
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From Datta’s Lectures

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Introduction to Mesoscopic Physics and Nanoelectronics
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2010
OFFICE-HOUR
Extended office hour planning: N606 • • •
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Web Links
• • • • • • • • • • /nano/ where Feynman's Talk is there / / Nanotechnology related news etc /nano/ Virtual J. of Nanotech.& Nanosci. /mst/nano/ Los Alamos National Lab /home/crssprgm/nano/ NSF of USA /nano/ National Nanotechnology Initiative / National Nanotechnology Initiative /Groups/SciTech/nano/ NASA / Physics Related Preprint Library
N606
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( ( PPT 20% ) 80%) • S. Datta, 1995, Electronic Transport in Mesoscopic Systems, Cambridge University Press, ( , ) • S. Datta, 2005, Quantum Transport: atom to transistor, Cambridge University Press, , /~datta • D. K. Ferry, S. M. Goodnick, 1997, 2009, Transport in Nanostructures Cambridge University Press, , • M. D. VENTRA, Electrical Transport in Nanoscale Systems, Cambridge University Press, 2008
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2006
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3. 4.
5.
,
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• Y. Imry, Introduction to Mesoscopic Physics,1997, Oxford University Press, • H. Haug, A.-P. Jauho,Quantum Kinetics in Transport and Optics of Semiconductors, 1998, 2008, SpringerVerlag , • R. Saito, G. Dresselhaus & M.S. Dresselhaus, Physical Properties of Carbon Nanotubes, 1998, Imperial College Press
2006-10-17 • 10 17 0.045 0.045 5 0.065 Nehalem 0.045 0.065 2 2008 2007 0.045 20%
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Intel: 0.13 (2000), 0.09 (2002), 0.065 (2004), 0.045 (2006)

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Committee on CMMP 2010, USA
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NRC CMMP 2010 NRC DOE NSF SSSC CMMP2010
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GREEN
Do Your Best! Thinking & Searching in Nanoworld!
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5.
Discoveries Await Us in the Nanoworld?)
(What New (How Will the Information Technology Revolution Be Extended?)
6.
1.
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