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Spectroscopie de désintégration nucléaire assistée par laser : une nouvelle méthode pour étudier la définition des neutrons
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Numéro de l'objet eBay :364685248655
Dernière mise à jour le 22 sept. 2024 16:27:23 CEST. Afficher toutes les modificationsAfficher toutes les modifications
Caractéristiques de l'objet
- État
- ISBN-13
- 9783319071114
- Book Title
- Laser Assisted Nuclear Decay Spectroscopy
- ISBN
- 9783319071114
- Subject Area
- Science
- Publication Name
- Laser Assisted Nuclear Decay Spectroscopy : A New Method for Studying Neutron-Deficient Francium Isotopes
- Publisher
- Springer International Publishing A&G
- Item Length
- 9.3 in
- Subject
- Spectroscopy & Spectrum Analysis, Chemistry / Physical & Theoretical, Physics / General, Physics / Nuclear
- Publication Year
- 2014
- Series
- Springer Theses Ser.
- Type
- Textbook
- Format
- Hardcover
- Language
- English
- Item Weight
- 123.3 Oz
- Item Width
- 6.1 in
- Number of Pages
- Xiii, 131 Pages
À propos de ce produit
Product Identifiers
Publisher
Springer International Publishing A&G
ISBN-10
3319071114
ISBN-13
9783319071114
eBay Product ID (ePID)
201652199
Product Key Features
Number of Pages
Xiii, 131 Pages
Publication Name
Laser Assisted Nuclear Decay Spectroscopy : A New Method for Studying Neutron-Deficient Francium Isotopes
Language
English
Publication Year
2014
Subject
Spectroscopy & Spectrum Analysis, Chemistry / Physical & Theoretical, Physics / General, Physics / Nuclear
Type
Textbook
Subject Area
Science
Series
Springer Theses Ser.
Format
Hardcover
Dimensions
Item Weight
123.3 Oz
Item Length
9.3 in
Item Width
6.1 in
Additional Product Features
Intended Audience
Scholarly & Professional
Number of Volumes
1 vol.
Illustrated
Yes
Table Of Content
Theoretical Considerations for Laser Spectroscopy.- Theoretical Considerations for Nuclear Decay Spectroscopy.- Experimental Setup at ISOLDE.- Collinear Resonance Ionization Spectroscopy.- Laser Assisted Nuclear Decay Spectroscopy.- Spectroscopic Studies of neutron-Deficient Francium.- Interpretation of Results.
Synopsis
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., 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., Theoretical Considerations for Laser Spectroscopy.- Theoretical Considerations for Nuclear Decay Spectroscopy.- Experimental Setup at ISOLDE.- Collinear Resonance Ionization Spectroscopy.- Laser Assisted Nuclear Decay Spectroscopy.- Spectroscopic Studies of neutron-Deficient Francium.- Interpretation of Results.
LC Classification Number
QC770-798
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