The Electron Mass And Calcium Isotope Shifts

Thảo luận trong 'Học tập' bởi eb2025, 23/5/2024.

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    The Electron Mass and Calcium Isotope Shifts
    High-Precision Measurements of Bound-Electron g-Factors of Highly Charged Ions
    By: Florian Köhler-Langes
    Publisher:
    Springer
    Print ISBN: 9783319508764, 3319508768
    eText ISBN: 9783319508771, 3319508776
    Copyright year: 2017
    Format: PDF
    Available from $ 109.00 USD
    SKU 9783319508771
    This thesis presents the first isotope-shift measurement of bound-electron g-factors of highly charged ions and determines the most precise value of the electron mass in atomic mass units, which exceeds the value in the literature by a factor of 13. As the lightest fundamental massive particle, the electron is one of nature’s few central building blocks. A precise knowledge of its intrinsic properties, such as its mass, is mandatory for the most accurate tests in physics - the Quantum Electrodynamics tests that describe one of the four established fundamental interactions in the universe. The underlying measurement principle combines a high-precision measurement of the Larmor-to-cyclotron frequency ratio on a single hydrogen-like carbon ion studied in a Penning trap with very accurate calculations of the so-called bound-electron g-factor. For the isotope-shift measurement, the bound-electron g-factors of two lithium-like calcium isotopes have been measured with relative uncertainties of a few 10^{-10}, constituting an as yet unrivaled level of precision for lithium-like ions.
     

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