0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R5,000 - R10,000 (2)
  • -
Status
Brand

Showing 1 - 2 of 2 matches in All Departments

Quantum Dots: Fundamentals, Applications, and Frontiers - Proceedings of the NATO ARW on Quantum Dots: Fundamentals,... Quantum Dots: Fundamentals, Applications, and Frontiers - Proceedings of the NATO ARW on Quantum Dots: Fundamentals, Applications and Frontiers, Crete, Greece 20 - 24 July 2003 (Hardcover, 2005 ed.)
Bruce A. Joyce, Pantelis C. Kelires, Anton G. Naumovets, Dimitri Vvedensky
R7,852 Discovery Miles 78 520 Ships in 18 - 22 working days

The morphology that results during the growth of a material on the substrate of a different material is central to the fabrication of all quantum heterostructures. This morphology is determined by several factors, including the manner in which strain is accommodated if the materials have different lattice constants. One of the most topical manifestations of lattice mis't is the formation of coherent thr- dimensional(3D)islandsduringtheStranski-Krastanovgrowthofahighly-strained system. The prototypical cases are InAs on GaAs(001) and Ge on Si(001), though other materials combinations also exhibit this phenomenon. When the 3D islands are embedded within epitaxiallayers of a material that has a wider band gap, the carriers within the islands are con?ned by the potential barriers that surround each island, forming an array of quantum dots (QDs). Such structures have been produced for both basic physics studies and device fab- cation, including QD lasers and light-emitting diodes (LEDs) operating at the c- mercially important wavelengths of 1.3 u m and 1.55 u m. On a more speculative level, QD ensembles have been suggested as a possible pathway for the solid-state implementation of a quantum computer. Although some of the principles of qu- tum computing have been veri?ed by other means, the practical utilization of this new computingparadigmmay warrant some sort of solid state architecture. QDs are seen as possible components of such a computer, as evidenced by a number of papersappearingintheliteratureproposingQD-basedarchitecturesandworkshops that are being organized to explore these possibilities."

Quantum Dots: Fundamentals, Applications, and Frontiers - Proceedings of the NATO ARW on Quantum Dots: Fundamentals,... Quantum Dots: Fundamentals, Applications, and Frontiers - Proceedings of the NATO ARW on Quantum Dots: Fundamentals, Applications and Frontiers, Crete, Greece 20 - 24 July 2003 (Paperback, 2005 ed.)
Bruce A. Joyce, Pantelis C. Kelires, Anton G. Naumovets, Dimitri Vvedensky
R7,783 Discovery Miles 77 830 Ships in 18 - 22 working days

The morphology that results during the growth of a material on the substrate of a different material is central to the fabrication of all quantum heterostructures. This morphology is determined by several factors, including the manner in which strain is accommodated if the materials have different lattice constants. One of the most topical manifestations of lattice mis't is the formation of coherent thr- dimensional(3D)islandsduringtheStranski-Krastanovgrowthofahighly-strained system. The prototypical cases are InAs on GaAs(001) and Ge on Si(001), though other materials combinations also exhibit this phenomenon. When the 3D islands are embedded within epitaxiallayers of a material that has a wider band gap, the carriers within the islands are con?ned by the potential barriers that surround each island, forming an array of quantum dots (QDs). Such structures have been produced for both basic physics studies and device fab- cation, including QD lasers and light-emitting diodes (LEDs) operating at the c- mercially important wavelengths of 1.3 u m and 1.55 u m. On a more speculative level, QD ensembles have been suggested as a possible pathway for the solid-state implementation of a quantum computer. Although some of the principles of qu- tum computing have been veri?ed by other means, the practical utilization of this new computingparadigmmay warrant some sort of solid state architecture. QDs are seen as possible components of such a computer, as evidenced by a number of papersappearingintheliteratureproposingQD-basedarchitecturesandworkshops that are being organized to explore these possibilities."

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Studies in Natural Products Chemistry…
Atta-ur Rahman Hardcover R14,494 Discovery Miles 144 940
Mr Snuffles' Birthday
David Greaves Hardcover R438 Discovery Miles 4 380
Encyclopedia of Spectroscopy and…
John C. Lindon, George E. Tranter, … Hardcover R59,229 Discovery Miles 592 290
God's Beauty in the Deep
Gary Knapp Hardcover R522 Discovery Miles 5 220
An American Marriage
Tayari Jones Paperback  (1)
R280 R250 Discovery Miles 2 500
Spectrophotometry, Volume 46 - Accurate…
Thomas Germer, Joanne C. Zwinkels, … Hardcover R4,020 Discovery Miles 40 200
A New Description of the Pictures…
James Kennedy Paperback R418 Discovery Miles 4 180
Surviving The Beast - The Ugly Truths…
Angelo Agrizzi Paperback  (1)
R290 R268 Discovery Miles 2 680
How Technical Analysis Works (New York…
Bruce Kamich Hardcover R787 Discovery Miles 7 870
Gangs and Spirituality - Global…
Ross Deuchar Hardcover R2,932 Discovery Miles 29 320

 

Partners