Nuclear fission and cluster radioactivity: an energy-density functional approach
Gespeichert in:
Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Springer
2005
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XI, 195 S. graph. Darst. |
ISBN: | 9783540233022 3540233024 |
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Datensatz im Suchindex
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adam_text | M. A. HOOSHYAR * I. REICHSTEIN * F.B.MALIK NUCLEAR FISSION AND CLUSTER
RADIOACTIVITY AN ENERGY-DENSITY FUNCTIONAL APPROACH WITH 82 FIGURES FYJ.
SPRINGER CONTENTS A SUMMARY OF OBSERVED DATA AND PRE-AMBLE 1 1.1
INTRODUCTION 1 1.2 HALF-LIVES AND SPONTANEOUS DECAY 2 1.3 INDUCED
FISSION 3 1.4 MASS, CHARGE AND AVERAGE TOTAL KINETIC ENERGY DISTRIBUTION
7 1.5 COOLING OF DAUGHTER PAIRS 9 1.6 TERNARY AND QUATERNARY FISSION 11
1.7 FISSION ISOMERS 14 1.8 COLD FISSION 15 1.9 CLUSTER RADIOACTIVITY 16
1.10 PRE-AMBLE 17 REFERENCES 19 ENERGY-DENSITY FUNCTIONAL FORMALISM AND
NUCLEAR MASSES 23 2.1 INTRODUCTION 23 2.2 THE ENERGY-DENSITY FUNCTIONAL
FOR NUCLEI 25 2.3 CONCLUSION 29 REFERENCES 31 THE DECAY PROCESS, FISSION
BARRIER, HALF-LIVES, AND MASS DISTRIBUTIONS IN THE
ENERGY-DENSITY-FUNCTIONAL APPROACH 33 3.1 INTRODUCTION 33 3.2 THEORY 36
3.2.1 EXPRESSION FOR THE FISSION DECAY PROBABILITY 36 3.2.2
DETERMINATION OF THE PRE-FORMATION PROBABILITY 39 3.2.3 THE INFLUENCE OF
THE RESIDUAL INTERACTION ON THE PRE-FORMATION PROBABILITY 41 3.3
CALCULATION OF THE POTENTIAL ENERGY SURFACE AND HALF-LIVES 43 3.4
RESULTS AND DISCUSSION 50 3.4.1 THE POTENTIAL ENERGY SURFACE 50 X
CONTENTS 3.4.2 HALF-LIVES 54 3.5 CONCLUSION 58 REFERENCES 58 4
SPONTANEOUS FISSION HALF-LIVES OF FERMIUM AND SUPER-HEAVY ELEMENTS 61
4.1 INTRODUCTION 61 4.2 DETERMINATION OF ASYMPTOTIC KINETIC ENERGY 63
4.3 SPONTANEOUS FISSION OF 258 FM 64 4.4 THE POTENTIAL-ENERGY SURFACE
AND HALF-LIVES OF SUPERHEAVY ELEMENTS 65 4.5 CONCLUSION 70 REFERENCES 70
5 EMPIRICAL BARRIER AND SPONTANEOUS FISSION 73 5.1 INTRODUCTION 73 5.2
THE NATURE OF THE EMPIRICAL BARRIER 74 5.3 EMPIRICAL FORMULA FOR KINETIC
ENERGY 80 5.4 SPONTANEOUS FISSION HALF-LIVES, MASS AND CHARGE SPECTRA 81
5.4.1 SPONTANEOUS FISSION HALF-LIVES 81 5.4.2 MASS SPECTRA 82 5.4.3
CHARGE DISTRIBUTION 86 5.5 CONCLUSION ... .* 90 REFERENCES 91 6 INDUCED
FISSION 93 6.1 INTRODUCTION 93 6.2 THEORY 94 6.2.1 CROSS SECTION AND
DECAY PROBABILITIES 94 6.2.2 CALCULATION OF THE MOST PROBABLE KINETIC
ENERGY, TKE 98 6.3 APPLICATIONS 99 6.3.1 NEUTRON INDUCED FISSION 101
6.3.1A NEUTRON INDUCED FISSION OF 233 U 101 6.3.1B NEUTRON INDUCED
FISSION OF 235 U 104 6.3.1C NEUTRON INDUCED FISSION OF 239 PU 105 6.3.ID
NEUTRON INDUCED FISSION OF 229 TH 107 6.3.LE FISSION WIDTHS 107 6.3.2
TEST OF COMPOUND NUCLEUS FORMATION HYPOTHESIS .... 108 6.3.3
ALPHA-INDUCED FISSION 109 6.3.4 ALPHA-PARTICLE INDUCED FISSION OF 226 RA
109 6.3.5 ALPHA-PARTICLE INDUCED FISSION OF 232 TH ILL 6.4 THE ROLE OF
THE BARRIER AND THE SHAPE OF THE YIELD-SPECTRUM 112 CONTENTS XI 6.5
CONCLUSION 115 REFERENCES . . 116 7 HOT AND COLD FISSION 119 7.1
INTRODUCTION 119 7.2 SUMMARY OF DATA POINTING TO HOT AND COLD FISSION
120 7.3 THEORY AND DISCUSSION 123 7.4 ODD-EVEN EFFECT 131 7.5 CONCLUSION
133 REFERENCES 133 8 ISOMER FISSION 135 8.1 INTRODUCTION 135 8.2 THE
SHELL CORRECTION AND SHAPE ISOMERS 136 8.3 HALF-LIVES, MASS YIELDS AND
KINETIC ENERGY SPECTRA 142 8.4 CONCLUSION 150 REFERENCES 150 9 CLUSTER
RADIOACTIVITY 153 9.1 INTRODUCTION 153 9.2 MODELS BASED ON THE
GAMBW-CONDON-GURNEY APPROACH 156 9.3 THE QUASI-STATIONARY STATE MODEL
160 9.4 THE ENERGY-DENSITY FUNCTIONAL APPROACH 162 9.5 THE
SURFACE-CLUSTER MODEL 164 9.6 CONCLUSION 170 REFERENCES 172 A THE
RELATION BETWEEN THE ASYMPTOTIC KINETIC ENERGY, AND THE CONDITION FOR
THE EXISTENCE OF A META-STABLE STATE 175 REFERENCES 178 B THE EXPRESSION
FOR HALF-LIVES OF PARTICLES TUNNELING THROUGH THE BARRIER SHOWN IN FIG.
A.2 179 B.I EXACT EXPRESSION 179 B.2 JWKB APPROXIMATION 181 REFERENCES
183 C DIAGONALIZATION OF THE COUPLED SET OF EQUATIONS DESCRIBING FISSION
185 REFERENCES 187 AUTHOR INDEX .... ./R 189 INDEX 191
|
adam_txt |
M. A. HOOSHYAR * I. REICHSTEIN * F.B.MALIK NUCLEAR FISSION AND CLUSTER
RADIOACTIVITY AN ENERGY-DENSITY FUNCTIONAL APPROACH WITH 82 FIGURES FYJ.
SPRINGER CONTENTS A SUMMARY OF OBSERVED DATA AND PRE-AMBLE 1 1.1
INTRODUCTION 1 1.2 HALF-LIVES AND SPONTANEOUS DECAY 2 1.3 INDUCED
FISSION 3 1.4 MASS, CHARGE AND AVERAGE TOTAL KINETIC ENERGY DISTRIBUTION
7 1.5 COOLING OF DAUGHTER PAIRS 9 1.6 TERNARY AND QUATERNARY FISSION 11
1.7 FISSION ISOMERS 14 1.8 COLD FISSION 15 1.9 CLUSTER RADIOACTIVITY 16
1.10 PRE-AMBLE 17 REFERENCES 19 ENERGY-DENSITY FUNCTIONAL FORMALISM AND
NUCLEAR MASSES 23 2.1 INTRODUCTION 23 2.2 THE ENERGY-DENSITY FUNCTIONAL
FOR NUCLEI 25 2.3 CONCLUSION 29 REFERENCES 31 THE DECAY PROCESS, FISSION
BARRIER, HALF-LIVES, AND MASS DISTRIBUTIONS IN THE
ENERGY-DENSITY-FUNCTIONAL APPROACH 33 3.1 INTRODUCTION 33 3.2 THEORY 36
3.2.1 EXPRESSION FOR THE FISSION DECAY PROBABILITY 36 3.2.2
DETERMINATION OF THE PRE-FORMATION PROBABILITY 39 3.2.3 THE INFLUENCE OF
THE RESIDUAL INTERACTION ON THE PRE-FORMATION PROBABILITY 41 3.3
CALCULATION OF THE POTENTIAL ENERGY SURFACE AND HALF-LIVES 43 3.4
RESULTS AND DISCUSSION 50 3.4.1 THE POTENTIAL ENERGY SURFACE 50 X
CONTENTS 3.4.2 HALF-LIVES 54 3.5 CONCLUSION 58 REFERENCES 58 4
SPONTANEOUS FISSION HALF-LIVES OF FERMIUM AND SUPER-HEAVY ELEMENTS 61
4.1 INTRODUCTION 61 4.2 DETERMINATION OF ASYMPTOTIC KINETIC ENERGY 63
4.3 SPONTANEOUS FISSION OF 258 FM 64 4.4 THE POTENTIAL-ENERGY SURFACE
AND HALF-LIVES OF SUPERHEAVY ELEMENTS 65 4.5 CONCLUSION 70 REFERENCES 70
5 EMPIRICAL BARRIER AND SPONTANEOUS FISSION 73 5.1 INTRODUCTION 73 5.2
THE NATURE OF THE EMPIRICAL BARRIER 74 5.3 EMPIRICAL FORMULA FOR KINETIC
ENERGY 80 5.4 SPONTANEOUS FISSION HALF-LIVES, MASS AND CHARGE SPECTRA 81
5.4.1 SPONTANEOUS FISSION HALF-LIVES 81 5.4.2 MASS SPECTRA 82 5.4.3
CHARGE DISTRIBUTION 86 5.5 CONCLUSION . .* 90 REFERENCES 91 6 INDUCED
FISSION 93 6.1 INTRODUCTION 93 6.2 THEORY 94 6.2.1 CROSS SECTION AND
DECAY PROBABILITIES 94 6.2.2 CALCULATION OF THE MOST PROBABLE KINETIC
ENERGY, TKE 98 6.3 APPLICATIONS 99 6.3.1 NEUTRON INDUCED FISSION 101
6.3.1A NEUTRON INDUCED FISSION OF 233 U 101 6.3.1B NEUTRON INDUCED
FISSION OF 235 U 104 6.3.1C NEUTRON INDUCED FISSION OF 239 PU 105 6.3.ID
NEUTRON INDUCED FISSION OF 229 TH 107 6.3.LE FISSION WIDTHS 107 6.3.2
TEST OF COMPOUND NUCLEUS FORMATION HYPOTHESIS . 108 6.3.3
ALPHA-INDUCED FISSION 109 6.3.4 ALPHA-PARTICLE INDUCED FISSION OF 226 RA
109 6.3.5 ALPHA-PARTICLE INDUCED FISSION OF 232 TH ILL 6.4 THE ROLE OF
THE BARRIER AND THE SHAPE OF THE YIELD-SPECTRUM 112 CONTENTS XI 6.5
CONCLUSION 115 REFERENCES . . 116 7 HOT AND COLD FISSION 119 7.1
INTRODUCTION 119 7.2 SUMMARY OF DATA POINTING TO HOT AND COLD FISSION
120 7.3 THEORY AND DISCUSSION 123 7.4 ODD-EVEN EFFECT 131 7.5 CONCLUSION
133 REFERENCES 133 8 ISOMER FISSION 135 8.1 INTRODUCTION 135 8.2 THE
SHELL CORRECTION AND SHAPE ISOMERS 136 8.3 HALF-LIVES, MASS YIELDS AND
KINETIC ENERGY SPECTRA 142 8.4 CONCLUSION 150 REFERENCES 150 9 CLUSTER
RADIOACTIVITY 153 9.1 INTRODUCTION 153 9.2 MODELS BASED ON THE
GAMBW-CONDON-GURNEY APPROACH 156 9.3 THE QUASI-STATIONARY STATE MODEL
160 9.4 THE ENERGY-DENSITY FUNCTIONAL APPROACH 162 9.5 THE
SURFACE-CLUSTER MODEL 164 9.6 CONCLUSION 170 REFERENCES 172 A THE
RELATION BETWEEN THE ASYMPTOTIC KINETIC ENERGY, AND THE CONDITION FOR
THE EXISTENCE OF A META-STABLE STATE 175 REFERENCES 178 B THE EXPRESSION
FOR HALF-LIVES OF PARTICLES TUNNELING THROUGH THE BARRIER SHOWN IN FIG.
A.2 179 B.I EXACT EXPRESSION 179 B.2 JWKB APPROXIMATION 181 REFERENCES
183 C DIAGONALIZATION OF THE COUPLED SET OF EQUATIONS DESCRIBING FISSION
185 REFERENCES 187 AUTHOR INDEX . ./R 189 INDEX 191 |
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illustrated | Illustrated |
index_date | 2024-07-02T14:37:26Z |
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institution | BVB |
isbn | 9783540233022 3540233024 |
language | English |
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spelling | Hooshyar, M. Ali Verfasser aut Nuclear fission and cluster radioactivity an energy-density functional approach M. A. Hooshyar ; I. Reichstein ; F. B. Malik Berlin [u.a.] Springer 2005 XI, 195 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Literaturangaben Cluster theory (Nuclear physics) Nuclear fission Radioactivity Energiedichte (DE-588)4267710-5 gnd rswk-swf Kernspaltung (DE-588)4130670-3 gnd rswk-swf Dichtefunktional (DE-588)4299394-5 gnd rswk-swf Kernspaltung (DE-588)4130670-3 s Energiedichte (DE-588)4267710-5 s Dichtefunktional (DE-588)4299394-5 s DE-604 Reichstein, Irwin Verfasser aut Malik, Fazley B. 1934-2014 Verfasser (DE-588)108822397 aut HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014784319&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Hooshyar, M. Ali Reichstein, Irwin Malik, Fazley B. 1934-2014 Nuclear fission and cluster radioactivity an energy-density functional approach Cluster theory (Nuclear physics) Nuclear fission Radioactivity Energiedichte (DE-588)4267710-5 gnd Kernspaltung (DE-588)4130670-3 gnd Dichtefunktional (DE-588)4299394-5 gnd |
subject_GND | (DE-588)4267710-5 (DE-588)4130670-3 (DE-588)4299394-5 |
title | Nuclear fission and cluster radioactivity an energy-density functional approach |
title_auth | Nuclear fission and cluster radioactivity an energy-density functional approach |
title_exact_search | Nuclear fission and cluster radioactivity an energy-density functional approach |
title_exact_search_txtP | Nuclear fission and cluster radioactivity an energy-density functional approach |
title_full | Nuclear fission and cluster radioactivity an energy-density functional approach M. A. Hooshyar ; I. Reichstein ; F. B. Malik |
title_fullStr | Nuclear fission and cluster radioactivity an energy-density functional approach M. A. Hooshyar ; I. Reichstein ; F. B. Malik |
title_full_unstemmed | Nuclear fission and cluster radioactivity an energy-density functional approach M. A. Hooshyar ; I. Reichstein ; F. B. Malik |
title_short | Nuclear fission and cluster radioactivity |
title_sort | nuclear fission and cluster radioactivity an energy density functional approach |
title_sub | an energy-density functional approach |
topic | Cluster theory (Nuclear physics) Nuclear fission Radioactivity Energiedichte (DE-588)4267710-5 gnd Kernspaltung (DE-588)4130670-3 gnd Dichtefunktional (DE-588)4299394-5 gnd |
topic_facet | Cluster theory (Nuclear physics) Nuclear fission Radioactivity Energiedichte Kernspaltung Dichtefunktional |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014784319&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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