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Related papers: Positron annihilation in the MuPs system

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A large number of bound state properties of the four-body muonium-positronium system MuPs (or $\mu^{+} e^{-}_2 e^{+}$) are determined to high accuracy. Based on these expectation values we predict that the weakly-bound four-body MuPs system…

Quantum Physics · Physics 2015-06-23 Alexei M. Frolov

Properties of some few-body systems which include one positively charged muon $\mu^{+}$ and two electrons $e^{-}$ are discussed. In particular, we consider the negatively charged muonium ion Mu$^{-}$ (or $\mu^{+} e^{-}_{2}$) and four-body…

Atomic Physics · Physics 2017-01-30 Alexei M Frolov

Rates of the two-, three-, four- and five-photon annihilations of the electron-positron pairs are determined numerically for the three-body positronium ion Ps$^-$ ($e^- e^+ e^-$) and four-body bi-positronium `molecule' Ps$_2$ ($e^- e^+ e^-…

High Energy Physics - Phenomenology · Physics 2015-05-13 Alexei M. Frolov

The hyperfine structure of the ground states in a number of positronium hydrides (TPs, DPs, ${}^{1}$HPs) and MuPs ($\mu^{+} e^{-}_2 e^{+}$) is determined with the use of highly accurate variational wave functions. We also evaluate the…

High Energy Physics - Phenomenology · Physics 2014-11-20 Alexei M. Frolov , David M. Wardlaw

Bound state properties of the ground (bound) ${}^{1}S(L = 0)-$state(s) in the four-body positronium hydrides ${}^{1}$HPs, ${}^{2}$HPs (DPs), ${}^{3}$HPs (TPs) and MuPs are determined and investigated. By using numerical data from our…

Atomic Physics · Physics 2024-05-16 Alexei M. Frolov

We consider the hyperfine structure, the atomic spectrum and the decay channels of the bound mu+ mu- system (dimuonium). The annihilation lifetimes of low-lying atomic states of the system lie in the nanosecond range range. The decay rates…

Atomic Physics · Physics 2009-10-30 U. Jentschura , G. Soff , V. Ivanov , S. Karshenboim

The rate for complete two-photon annihilation of molecular positronium Ps$_{2}$ is reported. This decay channel involves a four-body collision among the fermions forming Ps$_{2}$, and two photons of 1.022 MeV, each, as the final state. The…

Atomic Physics · Physics 2015-06-23 Jesús Pérez-Ríos , Sherwin T. Love , Chris H. Greene

The muonium atom is the purely leptonic bound state of a positive muon and an electron. It has a lifetime of 2.2 $\mu$s. The absence of any known internal structure provides for precision experiments to test fundamental physics theories and…

High Energy Physics - Experiment · Physics 2016-08-03 Klaus P. Jungmann

We report a measurement of the positive muon lifetime to a precision of 1.0 parts per million (ppm); it is the most precise particle lifetime ever measured. The experiment used a time-structured, low-energy muon beam and a segmented plastic…

Bound state properties of the negatively charged Ps$^{-}$ ion (or $e^{-} e^{+} e^{-}$) are discussed. The expectation values of operators which correspond to these properties have been determined with the use of the highly accurate wave…

Atomic Physics · Physics 2015-06-23 Alexei M. Frolov

We calculate in detail the annihilation of Muonium into two-neutrino final state and two-neutrino and a photon state.

High Energy Physics - Phenomenology · Physics 2013-08-09 A. Shkerin

The mean life of the positive muon has been measured to a precision of 11 ppm using a low-energy, pulsed muon beam stopped in a ferromagnetic target, which was surrounded by a scintillator detector array. The result, tau_mu = 2.197013(24)…

Ordinary muon capture provides a benchmark for the nuclear physics models of neutrinoless double beta decay under comparable momentum transfer conditions. The total capture strength defines the lifetime of the muonic atom. The muon lifetime…

Modifications of the mu+ lifetime in matter due to muonium (M = mu+ e-) formation and other medium effects are examined. Muonium and free mu+ decay spectra are found to differ at O(alpha m_e/m_mu) from Doppler broadening and O(alpha^2…

High Energy Physics - Phenomenology · Physics 2009-10-31 Andrzej Czarnecki , G. Peter Lepage , William J. Marciano

A search for antiproton decay has been made at the Fermilab Antiproton Accumulator. Limits are placed on six antiproton decay modes which contain a final-state muon. At the 90% C.L. we find that tau/B(mu gamma) > 5.0 x 10^4 yr, tau/B(mu…

High Energy Physics - Experiment · Physics 2016-08-31 S. Geer , J. Marriner , R. Ray , J. Streets , W. Wester , M. Hu , G. Snow , T. Armstrong , C. Buchanan , B. Corbin , M. Lindgren , T. Muller , R. Gustafson

The MuLan collaboration has measured the lifetime of the positve muon to a precision of 1.0 parts per million. The Fermi constant is determined to a precision of 0.6 parts per million.

High Energy Physics - Experiment · Physics 2011-08-23 P. T. Debevec

Background: A muonic atom, composed of a negative muon and an atomic nucleus, undergoes two primary decay processes: muon-electron decay and muon nuclear capture. The branching ratio between these two processes can be determined from the…

The part-per-million measurement of the positive muon lifetime and determination of the Fermi constant by the MuLan experiment at the Paul Scherrer Institute is reviewed. The experiment used an innovative, time-structured, surface muon beam…

Nuclear Experiment · Physics 2021-08-23 Robert Carey , Tim Gorringe , David Hertzog

We examine the muonium ($\mu ^+e^-$)-antimuonium ($\mu ^-e^+$) system in the models which accomodate the dilepton gauge bosons, and study their contributions to the ground state hyperfine splitting in ``muonium''. We also consider the…

High Energy Physics - Phenomenology · Physics 2010-11-01 H. Fujii , Y. Mimura , K. Sasaki , T. Sasaki
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