Photons are an attractive option for testing fundamental quantum physics and developing new quantum-enhanced technology, including highly advanced computers and simulators, as well as precision sensing beyond shot-noise. Traditionally, bulk optical components have been bolted onto optical benches to realize metre-scale quantum circuits. However this approach is ultimately proving unwieldy for increasing the complexity and for scaling up to practical quantum technologies based on photons. The work presented here demonstrates a series of quantum photonic devices based on waveguide circuits embedded in miniature monolithic chips. This represents a paradigm shift in the underlying architecture of quantum optics and provides key building blocks for all-optical and hybrid quantum technologies.
Autorius: | Jonathan C. F. Matthews |
Serija: | Springer Theses |
Leidėjas: | Springer Berlin Heidelberg |
Išleidimo metai: | 2012 |
Knygos puslapių skaičius: | 136 |
ISBN-10: | 3642328695 |
ISBN-13: | 9783642328695 |
Formatas: | 241 x 160 x 13 mm. Knyga kietu viršeliu |
Kalba: | Anglų |
Parašykite atsiliepimą apie „Multi-Photon Quantum Information Science and Technology in Integrated Optics“