![]() |
Welcome to Loot.co.za!
Sign in / Register |Wishlists & Gift Vouchers |Help | Advanced search
|
Your cart is empty |
||
Showing 1 - 2 of 2 matches in All Departments
The control of optical modes in microcavities or in photonic bandgap (PBG) materials is coming of age Although these ideas could have been developed some time ago, it is only recently that they have emerged, due to advances in both atomic physics and in fabrication techniques, be it on the high-quality dielectric mirrors required for high-finesse Fabry Perot resonators or in semiconductor multilayer deposition methods. Initially the principles of quantum electro-dynamics (QED) were demonstrated in elegant atomic physics experiments. Now solid-state implementations are being investigated, with several subtle differences from the atomic case such as those due to their continuum of electronic states or the near Boson nature of their elementary excitations, the exciton. Research into quantum optics brings us ever newer concepts with potential to improve system performance such as photon squeezing, quantum cryptography, reversible taps, photonic de Broglie waves and quantum computers. The possibility of implementing these ideas with solid-state systems gives us hope that some could indeed find their way to the market, demonstrating the continuing importance of basic research for applications, be it in a somewhat more focused way than in earlier times for funding."
The control of optical modes in microcavities or in photonic bandgap (PBG) materials is coming of age! Although these ideas could have been developed some time ago, it is only recently that they have emerged, due to advances in both atomic physics and in fabrication techniques, be it on the high-quality dielectric mirrors required for high-finesse Fabry Perot resonators or in semiconductor multilayer deposition methods. Initially the principles of quantum electro-dynamics (QED) were demonstrated in elegant atomic physics experiments. Now solid-state implementations are being investigated, with several subtle differences from the atomic case such as those due to their continuum of electronic states or the near Boson nature of their elementary excitations, the exciton. Research into quantum optics brings us ever newer concepts with potential to improve system performance such as photon squeezing, quantum cryptography, reversible taps, photonic de Broglie waves and quantum computers. The possibility of implementing these ideas with solid-state systems gives us hope that some could indeed find their way to the market, demonstrating the continuing importance of basic research for applications, be it in a somewhat more focused way than in earlier times for funding.
|
You may like...
Vaccines - New Generation Immunological…
Gregory Gregoriadis, Brenda McCormack, …
Hardcover
R2,670
Discovery Miles 26 700
Drug Discovery and Traditional Chinese…
Yuan Lin, Joseph M. Betz, …
Hardcover
R4,150
Discovery Miles 41 500
Methadone Maintenance in the Management…
Awni Arif, Joseph Westermeyer
Hardcover
R2,024
Discovery Miles 20 240
DNA Vaccines - Methods and Protocols
Douglas B. Lowrie, Robert Whalen
Hardcover
R5,441
Discovery Miles 54 410
Targeted Nanomedicine for Breast Cancer…
Shivani Rai Paliwal, Rishi Paliwal
Paperback
R4,491
Discovery Miles 44 910
Membrane Transporters as Drug Targets
Gordon L. Amidon, Wolfgang Sadee
Hardcover
R5,445
Discovery Miles 54 450
|