Quantum limitations of distant radiating objects detection

Weak electromagnetic signals from sufficiently distant sources reveal quantum properties. The latter ones result that detection of the sources becomes probabilistic. The analysis of received quanta intensity spectra permits to evaluate the limit (by finite exposure) of distance of detection of defin...

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Main Author: A.L. Kurakin
Format: Article
Language:English
Published: Povolzhskiy State University of Telecommunications & Informatics 2014-04-01
Series:Физика волновых процессов и радиотехнические системы
Subjects:
Online Access:https://journals.ssau.ru/pwp/article/viewFile/7250/7111
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author A.L. Kurakin
author_facet A.L. Kurakin
author_sort A.L. Kurakin
collection DOAJ
description Weak electromagnetic signals from sufficiently distant sources reveal quantum properties. The latter ones result that detection of the sources becomes probabilistic. The analysis of received quanta intensity spectra permits to evaluate the limit (by finite exposure) of distance of detection of definite class heavenly body. By the quantum interpretation of the background radiation experimental results the maximum frequency temperature (the Wiens law) decreases in 1.77 times. In such a case the background radiation absolute temperature would to be changed from 2.73 to 4.83 degrees.
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spelling doaj.art-f34a699c3e1147cf986e89b86b3e6f202023-12-22T10:31:37ZengPovolzhskiy State University of Telecommunications & InformaticsФизика волновых процессов и радиотехнические системы1810-31892782-294X2014-04-0117411166819Quantum limitations of distant radiating objects detectionA.L. Kurakin0Институт океанологии им. П.П. Ширшова РАНWeak electromagnetic signals from sufficiently distant sources reveal quantum properties. The latter ones result that detection of the sources becomes probabilistic. The analysis of received quanta intensity spectra permits to evaluate the limit (by finite exposure) of distance of detection of definite class heavenly body. By the quantum interpretation of the background radiation experimental results the maximum frequency temperature (the Wiens law) decreases in 1.77 times. In such a case the background radiation absolute temperature would to be changed from 2.73 to 4.83 degrees.https://journals.ssau.ru/pwp/article/viewFile/7250/7111radiation (emission) intensityblack bodyquantapoisson distributionplanck formulawien’s displacement lawlambert’s w-functionbackground radiationthe sunexposure
spellingShingle A.L. Kurakin
Quantum limitations of distant radiating objects detection
Физика волновых процессов и радиотехнические системы
radiation (emission) intensity
black body
quanta
poisson distribution
planck formula
wien’s displacement law
lambert’s w-function
background radiation
the sun
exposure
title Quantum limitations of distant radiating objects detection
title_full Quantum limitations of distant radiating objects detection
title_fullStr Quantum limitations of distant radiating objects detection
title_full_unstemmed Quantum limitations of distant radiating objects detection
title_short Quantum limitations of distant radiating objects detection
title_sort quantum limitations of distant radiating objects detection
topic radiation (emission) intensity
black body
quanta
poisson distribution
planck formula
wien’s displacement law
lambert’s w-function
background radiation
the sun
exposure
url https://journals.ssau.ru/pwp/article/viewFile/7250/7111
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