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  1. Nuclear Excitation by Electron Capture

    In 1976, Goldanskii and Namiot proposed the possibility of inducing a nuclear excitation through the inverse process of internal electron conversion...
    Chapter 2024
  2. Penning-trap measurement of the Q value of electron capture in 163Ho for the determination of the electron neutrino mass

    The investigation of the absolute scale of the effective neutrino mass remains challenging due to the exclusively weak interaction of neutrinos with...

    Christoph Schweiger, Martin Braß, ... Klaus Blaum in Nature Physics
    Article Open access 19 April 2024
  3. Single Electron Capture in Collisions of Fast Ions with Molecular Hydrogen in the Impact Parameter Representation

    Abstract

    A theoretical method for evaluating the single-electron capture (SEC) cross sections in collisions of fast ions with a ground-state H 2 ...

    Article 01 September 2023
  4. Single-electron-capture from helium by projectile ions in intermediate-to-high energies

    State-selective single-electron-capture in collisions of dressed and bare projectiles with helium atoms are investigated by means of the...

    K. Purkait, M. Mondal, ... M. Purkait in Indian Journal of Physics
    Article 11 June 2023
  5. Relative importance of the electron continuum intermediate state in single-electron capture into any state of fast protons from helium-like atomic systems

    Abstract

    Single-electron capture by fast protons from helium-like atomic targets is investigated at intermediate and high impact energies. The main...

    Danilo Delibašić in The European Physical Journal D
    Article 04 January 2023
  6. Double Electron Capture Probability at He2+ Ion Xe Atom Collisions with Different Impact Parameters

    Abstract

    Differential cross sections for scattering of helium atoms formed at collisions of He 2+ ions with kinetic energies of 1.97, 3.00, and 7.17...

    A. A. Basalaev, M. N. Panov, O. V. Smirnov in Technical Physics Letters
    Article 01 December 2023
  7. Determination of Fractional Electron Capture Probabilities of 125I Using Metallic Magnetic Calorimeters

    Fractional electron capture probability ratios of 125 I were measured using metallic magnetic calorimeters (MMCs). Due to the 4 π geometry of the...

    A. Kaur, M. Loidl, M. Rodrigues in Journal of Low Temperature Physics
    Article 05 September 2022
  8. Superoperator Approach to the Theory of Hot Nuclei and Astrophysical Applications: II—Electron Capture in Stars

    Abstract

    Electron captures on nuclei play an essential role in the dynamics of the collapsing core of a massive star that leads to a supernova...

    A. A. Dzhioev, A. I. Vdovin in Physics of Particles and Nuclei
    Article 19 September 2022
  9. Comparisons of the electron capture of iron group nuclei from two strongly screening models in presupernova

    Understanding of the mechanism of supernovae explosions has become a critical question since the detailed observation of SN1987A neutrinos. The...

    **g-**g Liu, Liang-Huan Hao, Dong-Mei Liu in Journal of Astrophysics and Astronomy
    Article 30 September 2022
  10. The electron-capture origin of supernova 2018zd

    In the transitional mass range (~8–10 solar masses) between white dwarf formation and iron core-collapse supernovae, stars are expected to produce an...

    Daichi Hiramatsu, D. Andrew Howell, ... Koichi Itagaki in Nature Astronomy
    Article 28 June 2021
  11. Anomalous Dissociative Capture Cross Section at the Interaction of Singly Charged Ions with Molecules of Nucleic Acid Bases

    Abstract

    The single electron capture process from adenine molecules by H + , 3 He + , N + , O + , and Ne + ions with an energy of 6.3 keV has been studied. It...

    A. A. Basalaev, V. V. Kuz’michev, ... O. V. Smirnov in Technical Physics Letters
    Article 01 December 2023
  12. Shakeoff Effect on the Rate of Neutrinoless Double-Electron Capture in \({}^{{164}}\)Er

    Abstract

    Traditionally, neutrinoless double-electron capture is treated as a resonance process. The probabilities for shakeoff followed by...

    F. F. Karpeshin, M. B. Trzhaskovskaya in Physics of Atomic Nuclei
    Article 31 October 2022
  13. Measurements of absolute electron capture cross sections in He2+–He and Ne8+–O2, N2, CH4 collisions

    The total absolute cross sections of single- and double-electron capture (SEC and DEC) in the collisions of He 2+ with He and Ne 8+ with O 2 , N 2 , and CH 4 ...

    Pu-Fang Ma, Jia-Rong Wang, ... Bao-Ren Wei in Nuclear Science and Techniques
    Article 28 October 2023
  14. Electron capture nuclear decay rate under compression in a confined environment

    Abstract

    We have calculated the effect of compressing the radioactive atoms in the crystal lattice environments on their electron capture nuclear...

    A. Ray, P. Das, ... A. N. Artemyev in The European Physical Journal D
    Article 27 April 2021
  15. Electron–Atom, Electron–Ion, and Electron–Molecule Collisions

    This chapter summarizes the theory of electron collisions with atoms, ions, and molecules. Section 49.1 discusses elastic, inelastic, and ionizing...
    Klaus Bartschat, Jonathan Tennyson, Philip Burke in Springer Handbook of Atomic, Molecular, and Optical Physics
    Chapter 2023
  16. Electron–Atom and Electron–Molecule Collisions

    Electron–atom and electron–molecule collision processes play a prominent role in a variety of physical systems such as electrical discharges,...
    Isik Kanik, William McConkey, Sandor Trajmar in Springer Handbook of Atomic, Molecular, and Optical Physics
    Chapter 2023
  17. Femtosecond electron microscopy of relativistic electron bunches

    The development of plasma-based accelerators has enabled the generation of very high brightness electron bunches of femtosecond duration, micrometer...

    Yang Wan, Sheroy Tata, ... Victor Malka in Light: Science & Applications
    Article Open access 11 May 2023
  18. Nuclear Excitation by Free Muon Capture

    Several ingredients have to come together for the NEEC process to occur and to be efficient: (i) the presence of vacancies in which the capture can...
    Chapter 2024
  19. Influence of the Fermi Function on the Neutrino Capture Cross Section

    Abstract

    Different variants for calculating the Fermi function and its effect on the neutrino-capture cross section are compared using the 127 I...

    A. N. Fazliakhmetov, Yu. S. Lutostansky, ... V. N. Tikhonov in Physics of Particles and Nuclei
    Article 14 June 2023
  20. Ionization and Electron Capture Cross Sections for Single-Electron Removal from Biological Molecules by Swift Ion

    We have studied ionization and electron capture cross sections for single-electron removal from biological molecules (adenine, cytosine, guanine,...

    K. Purkait, S. Samaddar, ... M. Purkait in Brazilian Journal of Physics
    Article 10 November 2020
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