Confined photon systems

Confined photon systems

by John Rarity, Claude Weisbuch, Jean-Michel Gerard, Henri Benisty

Part of Lecture notes in physics -- 531.

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About
Confined photon system such as microcavities and photonic crystals are currently of great interest, both in terms of fundamental physics and as a result of potential applications. They enable the study of low-dimensional photonic systems, modified light-matter interaction, e.g. between excitons and photons in all-solid-state semiconductor microcavities, and of many phenomena of quantum optics, including single photon generation, squeezed light, quantum state entanglement, non-local quantum measurements, and, potentially, quantum computation. They are also on the verge of yielding new, high performance optical devices for large-scale industries such as telecommunications and display technology. The lectures in this book are organized in a didactic fashion, with a group of in-depth introductory lectures followed by more specialist contributions detailing particular applications of confined photon systems.

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  1. 1

    How does the concept of confining light within microcavities and photonic crystals challenge our traditional understanding of how light and matter interact?

  2. 2

    Given that this book bridges fundamental quantum physics with practical industrial applications, which area do you find more compelling: the pursuit of pure scientific knowledge or the promise of revolutionary commercial devices?

  3. 3

    The text discusses the potential for confined photon systems to enable quantum computation and single photon generation; how do you envision these technological leaps changing our everyday lives in the coming decades?

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