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This thesis describes the application of the collinear resonance
laser spectroscopy to sensitively measure the electromagnetic
nuclear observables of the neutron-rich indium isotopes 115-131In.
This entailed a systematic study of the efficiency of resonant
ionization schemes to extract the hyperfine structure of the
isotopes, the atomic charge exchange process and benchmarking of
modern atomic calculations with a laser ablation ion source. This
allowed determination of the root-mean-square nuclear charge radii,
nuclear magnetic dipole moments, nuclear electric quadrupole
moments and nuclear spins of the 113-131In isotopes with high
accuracy. With a proton hole in the Z = 50 nuclear shell closure of
tin and several nuclear isomer states, these measurements of the
indium (Z = 49) isotope chain provided an efficient probe of the
evolution of nuclear structure properties towards and at the
doubly-magic nuclear shell closure of 132Sn (N = 82) - revealing
unpredicted changes.
This thesis describes the application of the collinear resonance
laser spectroscopy to sensitively measure the electromagnetic
nuclear observables of the neutron-rich indium isotopes 115-131In.
This entailed a systematic study of the efficiency of resonant
ionization schemes to extract the hyperfine structure of the
isotopes, the atomic charge exchange process and benchmarking of
modern atomic calculations with a laser ablation ion source. This
allowed determination of the root-mean-square nuclear charge radii,
nuclear magnetic dipole moments, nuclear electric quadrupole
moments and nuclear spins of the 113-131In isotopes with high
accuracy. With a proton hole in the Z = 50 nuclear shell closure of
tin and several nuclear isomer states, these measurements of the
indium (Z = 49) isotope chain provided an efficient probe of the
evolution of nuclear structure properties towards and at the
doubly-magic nuclear shell closure of 132Sn (N = 82) - revealing
unpredicted changes.
This is a reproduction of a book published before 1923. This book
may have occasional imperfections such as missing or blurred pages,
poor pictures, errant marks, etc. that were either part of the
original artifact, or were introduced by the scanning process. We
believe this work is culturally important, and despite the
imperfections, have elected to bring it back into print as part of
our continuing commitment to the preservation of printed works
worldwide. We appreciate your understanding of the imperfections in
the preservation process, and hope you enjoy this valuable book.
++++ The below data was compiled from various identification fields
in the bibliographic record of this title. This data is provided as
an additional tool in helping to ensure edition identification:
++++ A Photochemical Study Of Acetylchloraminobenzene Robert Vernon
Williamson University of Wisconsin--Madison, 1917
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