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Spatial distribution function of electron-photon shower particles for different values of Esub(0)/. beta. in isothermal atmosphere

Conference:

Abstract

Results of calculations of the spatial distribution function (SDF) of electron-photon shower particles for different values of the parameter E/sub 0//..beta.. in an isothermal atmosphere are given. Consideration of finiteness of the parameter E/sub 0//..beta.. leads to narrowing of SDF two times at E/sub 0//..beta.. approximately 10-100 as compared with the Nishimura, Kamata, Greisen SDF (E/sub 0//..beta.. = infinity). Atmosphere inhomogeneity results in SDF broadening in comparison with SDFsub(hom) (E/sub 0//..beta..) calculated for homogeneous atmosphere. SDFsub(inhom) (E/sub 0//..beta..) and SDFsub(hom) (E/sub 0//..beta..) depend on E/sub 0//..beta.. differently which is attributed to different contributions of shower prehistory to SDF formation. The larger is E/sub 0//..beta.., the wider is cascade curve and the higher is the effect of shower prehistory.
Authors:
Ivanenko, I P; Osipova, L N; Roganova, T M; Fedorova, G F [1] 
  1. Moskovskij Gosudarstvennyj Univ. (USSR). Nauchno-Issledovatel'skij Inst. Yadernoj Fiziki
Publication Date:
Dec 01, 1982
Product Type:
Conference
Report Number:
CONF-8110295-
Reference Number:
AIX-14-795301; EDB-83-194257
Resource Relation:
Journal Name: Izv. Akad. Nauk SSSR, Ser. Fiz.; (USSR); Journal Volume: 46:12; Conference: All Union conference on cosmic rays, Samarkand, USSR, 27 Oct 1981; Other Information: For English translation see the journal Bulletin of the Academy of Sciences of the USSR, Physical Series (USA)
Subject:
71 CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS; COSMIC SHOWERS; SPATIAL DISTRIBUTION; CASCADE THEORY; COSMIC ELECTRONS; COSMIC PHOTONS; DISTRIBUTION FUNCTIONS; EARTH ATMOSPHERE; COSMIC RADIATION; DISTRIBUTION; ELECTRONS; ELEMENTARY PARTICLES; FERMIONS; FUNCTIONS; IONIZING RADIATIONS; LEPTONS; MASSLESS PARTICLES; PHOTONS; RADIATIONS; SECONDARY COSMIC RADIATION; SHOWERS; 640101* - Astrophysics & Cosmology- Cosmic Radiation
OSTI ID:
5621249
Country of Origin:
USSR
Language:
Russian
Other Identifying Numbers:
Journal ID: CODEN: IANFA
Submitting Site:
HEDB
Size:
Pages: 2433-2436
Announcement Date:
Oct 01, 1983

Conference:

Citation Formats

Ivanenko, I P, Osipova, L N, Roganova, T M, and Fedorova, G F. Spatial distribution function of electron-photon shower particles for different values of Esub(0)/. beta. in isothermal atmosphere. USSR: N. p., 1982. Web.
Ivanenko, I P, Osipova, L N, Roganova, T M, & Fedorova, G F. Spatial distribution function of electron-photon shower particles for different values of Esub(0)/. beta. in isothermal atmosphere. USSR.
Ivanenko, I P, Osipova, L N, Roganova, T M, and Fedorova, G F. 1982. "Spatial distribution function of electron-photon shower particles for different values of Esub(0)/. beta. in isothermal atmosphere." USSR.
@misc{etde_5621249,
title = {Spatial distribution function of electron-photon shower particles for different values of Esub(0)/. beta. in isothermal atmosphere}
author = {Ivanenko, I P, Osipova, L N, Roganova, T M, and Fedorova, G F}
abstractNote = {Results of calculations of the spatial distribution function (SDF) of electron-photon shower particles for different values of the parameter E/sub 0//..beta.. in an isothermal atmosphere are given. Consideration of finiteness of the parameter E/sub 0//..beta.. leads to narrowing of SDF two times at E/sub 0//..beta.. approximately 10-100 as compared with the Nishimura, Kamata, Greisen SDF (E/sub 0//..beta.. = infinity). Atmosphere inhomogeneity results in SDF broadening in comparison with SDFsub(hom) (E/sub 0//..beta..) calculated for homogeneous atmosphere. SDFsub(inhom) (E/sub 0//..beta..) and SDFsub(hom) (E/sub 0//..beta..) depend on E/sub 0//..beta.. differently which is attributed to different contributions of shower prehistory to SDF formation. The larger is E/sub 0//..beta.., the wider is cascade curve and the higher is the effect of shower prehistory.}
journal = {Izv. Akad. Nauk SSSR, Ser. Fiz.; (USSR)}
volume = {46:12}
place = {USSR}
year = {1982}
month = {Dec}
}