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Macroscopic Interference Effects in Resonant Cavities

We investigate the possibility of interference effects induced by macroscopic quantum-mechanical superpositions of almost othogonal coherent states - a Schroedinger cats state - in a resonant microcavity. Despite the fact that a single atom, used as a probe of the cat state, on the average only chan...

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Detalles Bibliográficos
Autores principales: Skagerstam, B S, Bergsjordet, B A, Rekdal, P K
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:http://cds.cern.ch/record/438424
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author Skagerstam, B S
Bergsjordet, B A
Rekdal, P K
author_facet Skagerstam, B S
Bergsjordet, B A
Rekdal, P K
author_sort Skagerstam, B S
collection CERN
description We investigate the possibility of interference effects induced by macroscopic quantum-mechanical superpositions of almost othogonal coherent states - a Schroedinger cats state - in a resonant microcavity. Despite the fact that a single atom, used as a probe of the cat state, on the average only change the mean number of photons by one unit, we show that this single atom can change the system drastically. Interference between the initial and almost orthogonal macroscopic quantum states of the radiation field can now take place. Dissipation under current experimental conditions is taken into account and it is found that this does not necessarily change the intereference effects dramatically.
id cern-438424
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
record_format invenio
spelling cern-4384242019-09-30T06:29:59Zhttp://cds.cern.ch/record/438424engSkagerstam, B SBergsjordet, B ARekdal, P KMacroscopic Interference Effects in Resonant CavitiesGeneral Theoretical PhysicsWe investigate the possibility of interference effects induced by macroscopic quantum-mechanical superpositions of almost othogonal coherent states - a Schroedinger cats state - in a resonant microcavity. Despite the fact that a single atom, used as a probe of the cat state, on the average only change the mean number of photons by one unit, we show that this single atom can change the system drastically. Interference between the initial and almost orthogonal macroscopic quantum states of the radiation field can now take place. Dissipation under current experimental conditions is taken into account and it is found that this does not necessarily change the intereference effects dramatically.quant-ph/0005075CERN-TH-99-412oai:cds.cern.ch:4384241999-05-17
spellingShingle General Theoretical Physics
Skagerstam, B S
Bergsjordet, B A
Rekdal, P K
Macroscopic Interference Effects in Resonant Cavities
title Macroscopic Interference Effects in Resonant Cavities
title_full Macroscopic Interference Effects in Resonant Cavities
title_fullStr Macroscopic Interference Effects in Resonant Cavities
title_full_unstemmed Macroscopic Interference Effects in Resonant Cavities
title_short Macroscopic Interference Effects in Resonant Cavities
title_sort macroscopic interference effects in resonant cavities
topic General Theoretical Physics
url http://cds.cern.ch/record/438424
work_keys_str_mv AT skagerstambs macroscopicinterferenceeffectsinresonantcavities
AT bergsjordetba macroscopicinterferenceeffectsinresonantcavities
AT rekdalpk macroscopicinterferenceeffectsinresonantcavities