Precision Measurements to Test the Standard Model and for Explosive Nuclear Astrophysics
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Overview
This thesis presents two significant results in the field of precision measurements in low-energy nuclear physics. Firstly, it presents a precise half-life determination of 11C, leading to the most precise ft-value for a beta decay transition between mirror nuclides, an important advance in the testing of the electroweak sector of the Standard Model. Secondly, it describes a high-precision mass measurement of 56Cu, a critical nucleus for determining the path of the astrophysical rapid-proton capture process, performed by the author using the LEBIT Penning trap at the National Superconducting Cyclotron Laboratory. This new measurement resolves discrepancies in previously-reported calculated mass excesses. In addition, the thesis also presents the construction and testing of a radio-frequency quadrupole cooler and buncher that will be part of the future N = 126 factory at Argonne National Laboratory aimed at producing nuclei of interest for the astrophysical rapid-neutron capture process for the first time.
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Details
- ISBN-13: 9783030307806
- ISBN-10: 3030307808
- Publisher: Springer
- Publish Date: December 2020
- Dimensions: 9.21 x 6.14 x 0.25 inches
- Shipping Weight: 0.39 pounds
- Page Count: 102
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