Seeing c.

This article reports on the plans of two physicists to create a computer that can process information directly from light. The trick to making a successful all-optical computer, then, would be to create components that were capable of switching and processing light without converting it into electri...

Descripción completa

Detalles Bibliográficos
Publicado en:Economist Vol. 370; no. 8365; p. 72
Formato: Artículo
Publicado: Economist Newspaper Limited 3/6/2004
Materias:
Acceso en línea:Ver este registro en EBSCOhost
fields @attributes:
  recordID: 1
pdfLink:
plink: https://search.ebscohost.com/login.aspx?direct=true&db=hlh&AN=12446901&site=ehost-live
header:
  @attributes:
    shortDbName: hlh
    uiTerm: 12446901
    longDbName: Humanities International Complete
    uiTag: AN
  controlInfo:
    bkinfo:
    jinfo:
      jid:
        00130613
        ECO
      jtl: Economist
      issn: 00130613
      maglogo: N
    pubinfo:
      dt: 3/6/2004
      vid: 370
      iid: 8365
      pid: 161
      pub: Economist Newspaper Limited
    artinfo:
      ui: 12446901
      ppf: 72
      ppct: 0
      formats:
      tig:
        atl: Seeing c.
      aug:
      su:
        Optical computers
        Photonics
        Computers
        Computer science
        Light
        Electromagnetic waves
        Photons
        Optical computing
        Optical computer equipment
        Optical communications
      sug:
        subj:
          Optical computers
          Photonics
          Computers
          Computer science
          Light
          Electromagnetic waves
          Photons
          Optical computing
          Optical computer equipment
          Optical communications
      ab: This article reports on the plans of two physicists to create a computer that can process information directly from light. The trick to making a successful all-optical computer, then, would be to create components that were capable of switching and processing light without converting it into electricity.The speed of light is highest in a vacuum. When light passes through a material such as air or glass, it slows down--but not by much. However, a tailor-made material can slow light down to walking pace, or even halt it. Since light is a form of electromagnetic radiation it will, if the circumstances are propitious, induce an electric field in a dielectric material, and thus interact with that material. The maths is complicated, but this turns out to hold the light stationary. Reverse the process, and the light shoots away again. Such a system, if successfully put into practice, should allow light to be stored in a chip.
      pubtype: Periodical
      doctype: Article
      src: R
    language: English
    refInfo:
    copyright:
      @attributes:
        flag: Y
      dt:
        @attributes:
          year: 2004
    holdings:
      @attributes:
        islocal: N