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Localization of light particles on fermion-induced domain walls. / Andrianov, A. A.; Andrianov, V. A.; Giacconi, P.; Soldati, R.

в: Journal of Mathematical Sciences, Том 136, № 1, 01.07.2006, стр. 3533-3551.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

Harvard

Andrianov, AA, Andrianov, VA, Giacconi, P & Soldati, R 2006, 'Localization of light particles on fermion-induced domain walls', Journal of Mathematical Sciences, Том. 136, № 1, стр. 3533-3551. https://doi.org/10.1007/s10958-006-0179-6

APA

Andrianov, A. A., Andrianov, V. A., Giacconi, P., & Soldati, R. (2006). Localization of light particles on fermion-induced domain walls. Journal of Mathematical Sciences, 136(1), 3533-3551. https://doi.org/10.1007/s10958-006-0179-6

Vancouver

Andrianov AA, Andrianov VA, Giacconi P, Soldati R. Localization of light particles on fermion-induced domain walls. Journal of Mathematical Sciences. 2006 Июль 1;136(1):3533-3551. https://doi.org/10.1007/s10958-006-0179-6

Author

Andrianov, A. A. ; Andrianov, V. A. ; Giacconi, P. ; Soldati, R. / Localization of light particles on fermion-induced domain walls. в: Journal of Mathematical Sciences. 2006 ; Том 136, № 1. стр. 3533-3551.

BibTeX

@article{d6b45f2290734dbf84cce16b034c96ab,
title = "Localization of light particles on fermion-induced domain walls",
abstract = "We offer a possible explanation for the appearance of light composite fermions and Higgs bosons on a four-dimensional domain wall. The pattern of light particle trapping is attributed to a strong self-interaction of five-dimensional pre-quarks. We calculate the low-energy effective action which manifests the invariance under the so-called τ-symmetry. After that, we find a set of vacuum solutions that break the symmetry and the five-dimensional translational invariance. The induced relations between low-energy couplings for Yukawa and scalar field interactions allow us to make certain predictions for light particle masses and couplings themselves, which may provide a signature of the higher-dimensional origin of particle physics in the forthcoming experiments. Bibliography: 53 titles.",
author = "Andrianov, {A. A.} and Andrianov, {V. A.} and P. Giacconi and R. Soldati",
year = "2006",
month = jul,
day = "1",
doi = "10.1007/s10958-006-0179-6",
language = "English",
volume = "136",
pages = "3533--3551",
journal = "Journal of Mathematical Sciences",
issn = "1072-3374",
publisher = "Springer Nature",
number = "1",

}

RIS

TY - JOUR

T1 - Localization of light particles on fermion-induced domain walls

AU - Andrianov, A. A.

AU - Andrianov, V. A.

AU - Giacconi, P.

AU - Soldati, R.

PY - 2006/7/1

Y1 - 2006/7/1

N2 - We offer a possible explanation for the appearance of light composite fermions and Higgs bosons on a four-dimensional domain wall. The pattern of light particle trapping is attributed to a strong self-interaction of five-dimensional pre-quarks. We calculate the low-energy effective action which manifests the invariance under the so-called τ-symmetry. After that, we find a set of vacuum solutions that break the symmetry and the five-dimensional translational invariance. The induced relations between low-energy couplings for Yukawa and scalar field interactions allow us to make certain predictions for light particle masses and couplings themselves, which may provide a signature of the higher-dimensional origin of particle physics in the forthcoming experiments. Bibliography: 53 titles.

AB - We offer a possible explanation for the appearance of light composite fermions and Higgs bosons on a four-dimensional domain wall. The pattern of light particle trapping is attributed to a strong self-interaction of five-dimensional pre-quarks. We calculate the low-energy effective action which manifests the invariance under the so-called τ-symmetry. After that, we find a set of vacuum solutions that break the symmetry and the five-dimensional translational invariance. The induced relations between low-energy couplings for Yukawa and scalar field interactions allow us to make certain predictions for light particle masses and couplings themselves, which may provide a signature of the higher-dimensional origin of particle physics in the forthcoming experiments. Bibliography: 53 titles.

UR - http://www.scopus.com/inward/record.url?scp=33744790039&partnerID=8YFLogxK

U2 - 10.1007/s10958-006-0179-6

DO - 10.1007/s10958-006-0179-6

M3 - Article

AN - SCOPUS:33744790039

VL - 136

SP - 3533

EP - 3551

JO - Journal of Mathematical Sciences

JF - Journal of Mathematical Sciences

SN - 1072-3374

IS - 1

ER -

ID: 36469724