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Study of atomic effects on electron spectrum in bound-muon decay process. / Кайгородов, М.Ю.; Кожедуб, Юрий Сергеевич; Малышев, Алексей Владимирович; Давыдов, А. О.; Wu, Y; Zhang, S. B.

In: Chinese Physics C, Vol. 50, No. 6, 01.06.2026.

Research output: Contribution to journal › Article › peer-review

Harvard

Кайгородов, МЮ, Кожедуб, ЮС, Малышев, АВ, Давыдов, АО, Wu, Y & Zhang, SB 2026, 'Study of atomic effects on electron spectrum in bound-muon decay process', Chinese Physics C, vol. 50, no. 6. https://doi.org/10.1088/1674-1137/ae4328

APA

Кайгородов, М. Ю., Кожедуб, Ю. С., Малышев, А. В., Давыдов, А. О., Wu, Y., & Zhang, S. B. (2026). Study of atomic effects on electron spectrum in bound-muon decay process. Chinese Physics C, 50(6). https://doi.org/10.1088/1674-1137/ae4328

Vancouver

Кайгородов МЮ, Кожедуб ЮС, Малышев АВ, Давыдов АО, Wu Y, Zhang SB. Study of atomic effects on electron spectrum in bound-muon decay process. Chinese Physics C. 2026 Jun 1;50(6). https://doi.org/10.1088/1674-1137/ae4328

Author

Кайгородов, М.Ю. ; Кожедуб, Юрий Сергеевич ; Малышев, Алексей Владимирович ; Давыдов, А. О. ; Wu, Y ; Zhang, S. B. / Study of atomic effects on electron spectrum in bound-muon decay process. In: Chinese Physics C. 2026 ; Vol. 50, No. 6.

BibTeX

@article{594aef77d07f47c4925e8180cf155f87,
title = "Study of atomic effects on electron spectrum in bound-muon decay process",
abstract = "The process in which a muon bound to the nuclear potential decays into an unbound electron, a muon neutrino, and an electron antineutrino is considered. The study examines atomic effects on the differential transition rate relative to the energy of the emitted electron, specifically the electron spectrum, near its high-energy boundary, within the framework of Fermi effective theory. The analysis takes into account corrections due to finite-nuclear-size, nuclear-deformation, electron-screening, and vacuum-polarization effects, all of which are incorporated self-consistently into the Dirac equation. Furthermore, the nuclear-recoil correction to the muon binding energy is included. Calculations are carried out for the isotopes of C, Al, and Si, which are particularly important for forthcoming experiments aimed at search for the charged-lepton flavor-violating process of muon-to-electron conversion in a nuclear field.",
keywords = "charge-lepton flavor violation, lepton decay, neutrino, weak interaction",
author = "М.Ю. Кайгородов and Кожедуб, {Юрий Сергеевич} and Малышев, {Алексей Владимирович} and Давыдов, {А. О.} and Y Wu and Zhang, {S. B.}",
year = "2026",
month = jun,
day = "1",
doi = "10.1088/1674-1137/ae4328",
language = "English",
volume = "50",
journal = "Chinese Physics C",
issn = "1674-1137",
publisher = "IOP Publishing Ltd.",
number = "6",

}

RIS

TY - JOUR

T1 - Study of atomic effects on electron spectrum in bound-muon decay process

AU - Кайгородов, М.Ю.

AU - Кожедуб, Юрий Сергеевич

AU - Малышев, Алексей Владимирович

AU - Давыдов, А. О.

AU - Wu, Y

AU - Zhang, S. B.

PY - 2026/6/1

Y1 - 2026/6/1

N2 - The process in which a muon bound to the nuclear potential decays into an unbound electron, a muon neutrino, and an electron antineutrino is considered. The study examines atomic effects on the differential transition rate relative to the energy of the emitted electron, specifically the electron spectrum, near its high-energy boundary, within the framework of Fermi effective theory. The analysis takes into account corrections due to finite-nuclear-size, nuclear-deformation, electron-screening, and vacuum-polarization effects, all of which are incorporated self-consistently into the Dirac equation. Furthermore, the nuclear-recoil correction to the muon binding energy is included. Calculations are carried out for the isotopes of C, Al, and Si, which are particularly important for forthcoming experiments aimed at search for the charged-lepton flavor-violating process of muon-to-electron conversion in a nuclear field.

AB - The process in which a muon bound to the nuclear potential decays into an unbound electron, a muon neutrino, and an electron antineutrino is considered. The study examines atomic effects on the differential transition rate relative to the energy of the emitted electron, specifically the electron spectrum, near its high-energy boundary, within the framework of Fermi effective theory. The analysis takes into account corrections due to finite-nuclear-size, nuclear-deformation, electron-screening, and vacuum-polarization effects, all of which are incorporated self-consistently into the Dirac equation. Furthermore, the nuclear-recoil correction to the muon binding energy is included. Calculations are carried out for the isotopes of C, Al, and Si, which are particularly important for forthcoming experiments aimed at search for the charged-lepton flavor-violating process of muon-to-electron conversion in a nuclear field.

KW - charge-lepton flavor violation

KW - lepton decay

KW - neutrino

KW - weak interaction

UR - https://www.mendeley.com/catalogue/818a3bf5-7138-35f9-b2ff-f3e34f987fb6/

U2 - 10.1088/1674-1137/ae4328

DO - 10.1088/1674-1137/ae4328

M3 - Article

VL - 50

JO - Chinese Physics C

JF - Chinese Physics C

SN - 1674-1137

IS - 6

ER -

ID: 151844781