An Entity of Type: Thing, from Named Graph: http://dbpedia.org, within Data Space: dbpedia.org

In quantum physics, light is in a squeezed state if its electric field strength Ԑ for some phases has a quantum uncertainty smaller than that of a coherent state. The term squeezing thus refers to a reduced quantum uncertainty. To obey Heisenberg's uncertainty relation, a squeezed state must also have phases at which the electric field uncertainty is anti-squeezed, i.e. larger than that of a coherent state. Since 2019, the gravitational-wave observatories LIGO and Virgo employ squeezed laser light, which has significantly increased the rate of observed gravitational-wave events.

Property Value
dbo:abstract
  • In der Physik ist gequetschtes Licht (engl. squeezed light) die Bezeichnung für Licht, das sich in einem speziellen Quantenzustand befindet. Gequetschtes Licht hat ein elektrisches Feld Ԑ, dessen quantenmechanische Unschärfe im Vergleich zu der des kohärenten Zustandes für manche Phasen reduziert („gequetscht“) ist und für andere Phasen erhöht („anti-gequetscht“) ist. Dieses Licht wird von speziellen Lasern erzeugt und heute in Gravitationswellendetektoren wie LIGO, Virgo und GEO600 verwendet, mit denen 2015 zum ersten Mal Gravitationswellen direkt gemessen wurden. (de)
  • In quantum physics, light is in a squeezed state if its electric field strength Ԑ for some phases has a quantum uncertainty smaller than that of a coherent state. The term squeezing thus refers to a reduced quantum uncertainty. To obey Heisenberg's uncertainty relation, a squeezed state must also have phases at which the electric field uncertainty is anti-squeezed, i.e. larger than that of a coherent state. Since 2019, the gravitational-wave observatories LIGO and Virgo employ squeezed laser light, which has significantly increased the rate of observed gravitational-wave events. (en)
dbo:thumbnail
dbo:wikiPageID
  • 56495427 (xsd:integer)
dbo:wikiPageLength
  • 43071 (xsd:nonNegativeInteger)
dbo:wikiPageRevisionID
  • 1121391424 (xsd:integer)
dbo:wikiPageWikiLink
dbp:wikiPageUsesTemplate
dcterms:subject
rdfs:comment
  • In der Physik ist gequetschtes Licht (engl. squeezed light) die Bezeichnung für Licht, das sich in einem speziellen Quantenzustand befindet. Gequetschtes Licht hat ein elektrisches Feld Ԑ, dessen quantenmechanische Unschärfe im Vergleich zu der des kohärenten Zustandes für manche Phasen reduziert („gequetscht“) ist und für andere Phasen erhöht („anti-gequetscht“) ist. Dieses Licht wird von speziellen Lasern erzeugt und heute in Gravitationswellendetektoren wie LIGO, Virgo und GEO600 verwendet, mit denen 2015 zum ersten Mal Gravitationswellen direkt gemessen wurden. (de)
  • In quantum physics, light is in a squeezed state if its electric field strength Ԑ for some phases has a quantum uncertainty smaller than that of a coherent state. The term squeezing thus refers to a reduced quantum uncertainty. To obey Heisenberg's uncertainty relation, a squeezed state must also have phases at which the electric field uncertainty is anti-squeezed, i.e. larger than that of a coherent state. Since 2019, the gravitational-wave observatories LIGO and Virgo employ squeezed laser light, which has significantly increased the rate of observed gravitational-wave events. (en)
rdfs:label
  • Llum en estat comprimit (ca)
  • Gequetschtes Licht (de)
  • Squeezed states of light (en)
owl:sameAs
prov:wasDerivedFrom
foaf:depiction
foaf:isPrimaryTopicOf
is dbo:wikiPageRedirects of
is dbo:wikiPageWikiLink of
is foaf:primaryTopic of
Powered by OpenLink Virtuoso    This material is Open Knowledge     W3C Semantic Web Technology     This material is Open Knowledge    Valid XHTML + RDFa
This content was extracted from Wikipedia and is licensed under the Creative Commons Attribution-ShareAlike 3.0 Unported License