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Laser Assisted Nuclear Decay Spectroscopy - A New Method for Studying Neutron-Deficient Francium Isotopes (Hardcover, 2015... Laser Assisted Nuclear Decay Spectroscopy - A New Method for Studying Neutron-Deficient Francium Isotopes (Hardcover, 2015 ed.)
Kara Marie Lynch
R3,204 Discovery Miles 32 040 Ships in 18 - 22 working days

This work details an application of collinear resonance ionization spectroscopy for the separation of short-lived isomeric states and their subsequent study with decay spectroscopy.It reports the successful construction ofa novel decay spectroscopy apparatus that can operate at pressures below 1 x 10 DEGREES-9 mbar. The method is demonstrated by separating the nuclear ground and isomeric states of 204Fr and performing alpha-decay spectroscopy. An equivalent mass spectrometer would require 4.6 million times as much resolution to achieve the same result. This work unambiguously confirms the existence of a second isomeric state in 204Fr. The author also demonstrates the effectiveness of this method for laser spectroscopy and identification of hyperfine-structure components with energy tagging. This method was successfully used in 202Fr to identify ground and isomeric states. The measurement of 202Fr reported in this thesis demonstrates a factor of 100 improvement in sensitivity compared to state-of-the-art fluorescence techniques. The work reported in this thesis won the author the IOP Nuclear Physics Group Early Career Pri

Laser Assisted Nuclear Decay Spectroscopy - A New Method for Studying Neutron-Deficient Francium Isotopes (Paperback, Softcover... Laser Assisted Nuclear Decay Spectroscopy - A New Method for Studying Neutron-Deficient Francium Isotopes (Paperback, Softcover reprint of the original 1st ed. 2015)
Kara Marie Lynch
R2,653 Discovery Miles 26 530 Ships in 18 - 22 working days

This work details an application of collinear resonance ionization spectroscopy for the separation of short-lived isomeric states and their subsequent study with decay spectroscopy. It reports the successful construction of a novel decay spectroscopy apparatus that can operate at pressures below 1 x 10^-9 mbar. The method is demonstrated by separating the nuclear ground and isomeric states of 204Fr and performing alpha-decay spectroscopy. An equivalent mass spectrometer would require 4.6 million times as much resolution to achieve the same result. This work unambiguously confirms the existence of a second isomeric state in 204Fr. The author also demonstrates the effectiveness of this method for laser spectroscopy and identification of hyperfine-structure components with energy tagging. This method was successfully used in 202Fr to identify ground and isomeric states. The measurement of 202Fr reported in this thesis demonstrates a factor of 100 improvement in sensitivity compared to state-of-the-art fluorescence techniques. The work reported in this thesis won the author the IOP Nuclear Physics Group Early Career Prize.

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