Nano-Physics & Bio-Electronics: A New Odyssey: A New Odyssey

Chakraborty, T.; Peeters, F.; Sivan, U.

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Table of contents
  • Cover
  • Contentsvii
  • Prefacev
  • Chapter 1. Electronic states and transport in carbon nanotubes1
  • Chapter 2. Vertical diatomic artificial quantum dot molecules65
  • Chapter 3. Optical spectroscopy of self-assembled quantum dots85
  • Chapter 4. Generation of single photons using semiconductor quantum dots111
  • Chapter 5. Spin, spin-orbit, and electron-electron interactions in mesoscopic systems147
  • Chapter 6. Kondo effect in quantum dots with an even number of electrons187
  • Chapter 7. From single dots to interacting arrays213
  • Chapter 8. Quantum dots in a strong magnetic field: Quasi-classical consideration237
  • Chapter 9. Micro-Hall-magnetometry257
  • Chapter 10. Stochastic optimization methods for biomolecular structure prediction281
  • Chapter 11. Electrical transport through a molecular nanojunction303
  • Chapter 12. Single metalloproteins at work: Towards a single-protein transistor323
  • Chapter 13. Towards synthetic evolution of nanostructures341
  • Subject index353
Book details
  • Vendor Elsevier S & T
  • SKU 9780444509932
  • ISBN-13 9780080537245
  • Author Chakraborty, T.; Peeters, F.; Sivan, U.
  • Category Science
  • Subject General

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This book is a collection of some of the invited talks presented at the international meeting held at the Max Planck Institut fuer Physik Komplexer Systeme, Dresden, Germany during August 6-30, 2001, on the rapidly developing field of nanoscale science in science and bio-electronics Semiconductor physics has experienced unprecedented developments over the second half of the twentieth century. The exponential growth in microelectronic processing power and the size of dynamic memorie has been achieved by significant downscaling of the minimum feature size. Smaller feature sizes result in increased functional density, faster speed, and lower costs. In this process one is reaching the limits where quantum effects and fluctuations are beginning to play an important role.
This book reflects the achievements of the present times and future directions of research on nanoscopic dimensions.