Nuclear Reactions for Astrophysics :: Principles, Calculation and Applications of Low-Energy Reactions.
Describes how the processes in stars which produce the chemical elements for planets and life may be reproduced in laboratories.
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Cambridge :
Cambridge University Press,
2009.
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Schlagworte: | |
Online-Zugang: | Volltext |
Zusammenfassung: | Describes how the processes in stars which produce the chemical elements for planets and life may be reproduced in laboratories. |
Beschreibung: | 4.6.1 Charge-exchange reactions. |
Beschreibung: | 1 online resource (482 pages) |
Bibliographie: | Includes bibliographical references and index. |
ISBN: | 9780511580277 0511580274 1283378167 9781283378161 9781139190503 1139190504 9781139152150 1139152157 0511579535 9780511579530 1107196272 9781107196278 1139189190 9781139189194 9786613378163 661337816X 0511578792 9780511578793 |
Internformat
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100 | 1 | |a Thompson, Ian J. | |
245 | 1 | 0 | |a Nuclear Reactions for Astrophysics : |b Principles, Calculation and Applications of Low-Energy Reactions. |
260 | |a Cambridge : |b Cambridge University Press, |c 2009. | ||
300 | |a 1 online resource (482 pages) | ||
336 | |a text |b txt |2 rdacontent | ||
337 | |a computer |b c |2 rdamedia | ||
338 | |a online resource |b cr |2 rdacarrier | ||
505 | 0 | |a Cover; NUCLEAR REACTIONS FOR ASTROPHYSICS; Title; Copyright; Contents; Preface; Sources of quotations; Acknowledgements; 1 Nuclei in the Cosmos; 1.1 Nuclei; 1.1.1 Properties of nuclei; 1.1.2 Nuclear reactions; 1.1.3 Forces in nuclei; 1.1.4 The Coulomb barrier; 1.2 Primordial nucleosynthesis; 1.3 Reactions in light stars; 1.3.1 Proton-proton chains; 1.3.2 Triple-a reaction; 1.3.3 CNO cycles; 1.4 Heavy stars; 1.4.1 a-burning; 1.4.2 s-process neutron reactions; 1.5 Explosive production mechanisms; 1.5.1 r-process neutron reactions; 1.5.2 The rp-process; 1.5.3 The p-process; 1.6 Outlook. | |
505 | 8 | |a 1.6.1 Implications for nuclear physics1.6.2 Nuclear astrophysics: an open field; References; 2 Reactions of nuclei; 2.1 Kinds of states and reactions; 2.1.1 States of nuclei; 2.1.2 Kinds of reactions; 2.2 Time and energy scales; 2.2.1 Direct reactions; 2.2.2 Resonance reactions; 2.2.3 Compound nucleus reactions; 2.3 Collisions; 2.3.1 Non-relativistic kinematics; 2.3.2 Relative and center-of-mass wave functions; 2.3.3 Relativistic kinematics; 2.4 Cross sections; 2.4.1 Differential cross sections; 2.4.2 Laboratory and center of mass measures; 2.4.3 Experimental and theoretical cross sections. | |
505 | 8 | |a 2.4.4 Cross sections and scattering amplitudesExercises; References; 3 Scattering theory; 3.1 Elastic scattering from spherical potentials; 3.1.1 Partial-wave scattering from a finite spherical potential; 3.1.2 Coulomb and nuclear potentials; 3.1.3 Resonances and virtual states; 3.1.4 Nuclear currents or flux; 3.1.5 Complex potentials; 3.2 Multi-channel scattering; 3.2.1 Multiple channels; 3.2.2 Coupled equations; 3.2.3 Unitarity of the multi-channel S matrix; 3.2.4 Detailed balance; 3.3 Integral forms; 3.3.1 Green's function methods; 3.3.2 Vector-form T matrix for plane waves. | |
505 | 8 | |a 3.3.3 Two-potential formula3.3.4 Vector-form T matrix for distorted waves; 3.3.5 Born series and approximations; 3.4 Identical particles; 3.4.1 Isospin; 3.4.2 Direct and exchange amplitudes in elastic scattering; 3.4.3 Integrated cross sections; 3.4.4 Exchange transfer; 3.5 Electromagnetic channels; 3.5.1 Maxwell equations and photon channels; 3.5.2 Coupling photons and particles; 3.5.3 Photon cross sections; 3.5.4 Partial waves and vector spherical harmonics; 3.5.5 Electric and magnetic parts in the Coulomb gauge; Appendix; Exercises; References; 4 Reaction mechanisms; 4.1 Optical potentials. | |
505 | 8 | |a 4.1.1 Typical forms4.1.2 Global optical potentials; 4.1.3 Folding potentials; 4.2 Single-nucleon binding potentials; 4.2.1 Neutron and proton single-particle states in nuclei; 4.2.2 Optical potentials extended to bound states; 4.3 Coupling potentials; 4.3.1 Multipole analysis of transition potentials; 4.3.2 Spin-dependent potentials; 4.4 Inelastic couplings; 4.4.1 Collective inelastic processes; 4.4.2 Single-particle inelastic processes; 4.5 Particle rearrangements; 4.5.1 Transfer reactions; 4.5.2 Knockout reactions; 4.5.3 Breakup reactions; 4.5.4 Capture reactions; 4.6 Isospin transitions. | |
500 | |a 4.6.1 Charge-exchange reactions. | ||
520 | |a Describes how the processes in stars which produce the chemical elements for planets and life may be reproduced in laboratories. | ||
588 | 0 | |a Print version record. | |
504 | |a Includes bibliographical references and index. | ||
546 | |a English. | ||
650 | 0 | |a Nuclear astrophysics. |0 http://id.loc.gov/authorities/subjects/sh85092945 | |
650 | 6 | |a Astrophysique nucléaire. | |
650 | 7 | |a SCIENCE |x Physics |x Astrophysics. |2 bisacsh | |
650 | 7 | |a Nuclear astrophysics |2 fast | |
650 | 7 | |a Kernastrophysik |2 gnd |0 http://d-nb.info/gnd/4194903-1 | |
650 | 7 | |a Kernphysik |x Astrophysik. |2 idsbb | |
650 | 7 | |a Astrophysik |x Kernphysik. |2 idsbb | |
655 | 0 | |a Electronic books. | |
655 | 4 | |a Electronic books. | |
700 | 1 | |a Nunes, Filomena M. | |
758 | |i has work: |a Nuclear reactions for astrophysics (Text) |1 https://id.oclc.org/worldcat/entity/E39PCGC9GyfdWb6KcQJfbvxPw3 |4 https://id.oclc.org/worldcat/ontology/hasWork | ||
776 | 0 | 8 | |i Print version: |a Thompson, Ian J. |t Nuclear Reactions for Astrophysics : Principles, Calculation and Applications of Low-Energy Reactions. |d Cambridge : Cambridge University Press, ©2009 |z 9780521856355 |
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Datensatz im Suchindex
DE-BY-FWS_katkey | ZDB-4-EBA-ocn782877007 |
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adam_text | |
any_adam_object | |
author | Thompson, Ian J. |
author2 | Nunes, Filomena M. |
author2_role | |
author2_variant | f m n fm fmn |
author_facet | Thompson, Ian J. Nunes, Filomena M. |
author_role | |
author_sort | Thompson, Ian J. |
author_variant | i j t ij ijt |
building | Verbundindex |
bvnumber | localFWS |
callnumber-first | Q - Science |
callnumber-label | QB464 |
callnumber-raw | QB464 .T46 2009 |
callnumber-search | QB464 .T46 2009 |
callnumber-sort | QB 3464 T46 42009 |
callnumber-subject | QB - Astronomy |
collection | ZDB-4-EBA |
contents | Cover; NUCLEAR REACTIONS FOR ASTROPHYSICS; Title; Copyright; Contents; Preface; Sources of quotations; Acknowledgements; 1 Nuclei in the Cosmos; 1.1 Nuclei; 1.1.1 Properties of nuclei; 1.1.2 Nuclear reactions; 1.1.3 Forces in nuclei; 1.1.4 The Coulomb barrier; 1.2 Primordial nucleosynthesis; 1.3 Reactions in light stars; 1.3.1 Proton-proton chains; 1.3.2 Triple-a reaction; 1.3.3 CNO cycles; 1.4 Heavy stars; 1.4.1 a-burning; 1.4.2 s-process neutron reactions; 1.5 Explosive production mechanisms; 1.5.1 r-process neutron reactions; 1.5.2 The rp-process; 1.5.3 The p-process; 1.6 Outlook. 1.6.1 Implications for nuclear physics1.6.2 Nuclear astrophysics: an open field; References; 2 Reactions of nuclei; 2.1 Kinds of states and reactions; 2.1.1 States of nuclei; 2.1.2 Kinds of reactions; 2.2 Time and energy scales; 2.2.1 Direct reactions; 2.2.2 Resonance reactions; 2.2.3 Compound nucleus reactions; 2.3 Collisions; 2.3.1 Non-relativistic kinematics; 2.3.2 Relative and center-of-mass wave functions; 2.3.3 Relativistic kinematics; 2.4 Cross sections; 2.4.1 Differential cross sections; 2.4.2 Laboratory and center of mass measures; 2.4.3 Experimental and theoretical cross sections. 2.4.4 Cross sections and scattering amplitudesExercises; References; 3 Scattering theory; 3.1 Elastic scattering from spherical potentials; 3.1.1 Partial-wave scattering from a finite spherical potential; 3.1.2 Coulomb and nuclear potentials; 3.1.3 Resonances and virtual states; 3.1.4 Nuclear currents or flux; 3.1.5 Complex potentials; 3.2 Multi-channel scattering; 3.2.1 Multiple channels; 3.2.2 Coupled equations; 3.2.3 Unitarity of the multi-channel S matrix; 3.2.4 Detailed balance; 3.3 Integral forms; 3.3.1 Green's function methods; 3.3.2 Vector-form T matrix for plane waves. 3.3.3 Two-potential formula3.3.4 Vector-form T matrix for distorted waves; 3.3.5 Born series and approximations; 3.4 Identical particles; 3.4.1 Isospin; 3.4.2 Direct and exchange amplitudes in elastic scattering; 3.4.3 Integrated cross sections; 3.4.4 Exchange transfer; 3.5 Electromagnetic channels; 3.5.1 Maxwell equations and photon channels; 3.5.2 Coupling photons and particles; 3.5.3 Photon cross sections; 3.5.4 Partial waves and vector spherical harmonics; 3.5.5 Electric and magnetic parts in the Coulomb gauge; Appendix; Exercises; References; 4 Reaction mechanisms; 4.1 Optical potentials. 4.1.1 Typical forms4.1.2 Global optical potentials; 4.1.3 Folding potentials; 4.2 Single-nucleon binding potentials; 4.2.1 Neutron and proton single-particle states in nuclei; 4.2.2 Optical potentials extended to bound states; 4.3 Coupling potentials; 4.3.1 Multipole analysis of transition potentials; 4.3.2 Spin-dependent potentials; 4.4 Inelastic couplings; 4.4.1 Collective inelastic processes; 4.4.2 Single-particle inelastic processes; 4.5 Particle rearrangements; 4.5.1 Transfer reactions; 4.5.2 Knockout reactions; 4.5.3 Breakup reactions; 4.5.4 Capture reactions; 4.6 Isospin transitions. |
ctrlnum | (OCoLC)782877007 |
dewey-full | 523.0197 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 523 - Specific celestial bodies and phenomena |
dewey-raw | 523.0197 |
dewey-search | 523.0197 |
dewey-sort | 3523.0197 |
dewey-tens | 520 - Astronomy and allied sciences |
discipline | Physik |
format | Electronic eBook |
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genre | Electronic books. |
genre_facet | Electronic books. |
id | ZDB-4-EBA-ocn782877007 |
illustrated | Not Illustrated |
indexdate | 2024-11-27T13:18:19Z |
institution | BVB |
isbn | 9780511580277 0511580274 1283378167 9781283378161 9781139190503 1139190504 9781139152150 1139152157 0511579535 9780511579530 1107196272 9781107196278 1139189190 9781139189194 9786613378163 661337816X 0511578792 9780511578793 |
language | English |
oclc_num | 782877007 |
open_access_boolean | |
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owner_facet | MAIN DE-863 DE-BY-FWS |
physical | 1 online resource (482 pages) |
psigel | ZDB-4-EBA |
publishDate | 2009 |
publishDateSearch | 2009 |
publishDateSort | 2009 |
publisher | Cambridge University Press, |
record_format | marc |
spelling | Thompson, Ian J. Nuclear Reactions for Astrophysics : Principles, Calculation and Applications of Low-Energy Reactions. Cambridge : Cambridge University Press, 2009. 1 online resource (482 pages) text txt rdacontent computer c rdamedia online resource cr rdacarrier Cover; NUCLEAR REACTIONS FOR ASTROPHYSICS; Title; Copyright; Contents; Preface; Sources of quotations; Acknowledgements; 1 Nuclei in the Cosmos; 1.1 Nuclei; 1.1.1 Properties of nuclei; 1.1.2 Nuclear reactions; 1.1.3 Forces in nuclei; 1.1.4 The Coulomb barrier; 1.2 Primordial nucleosynthesis; 1.3 Reactions in light stars; 1.3.1 Proton-proton chains; 1.3.2 Triple-a reaction; 1.3.3 CNO cycles; 1.4 Heavy stars; 1.4.1 a-burning; 1.4.2 s-process neutron reactions; 1.5 Explosive production mechanisms; 1.5.1 r-process neutron reactions; 1.5.2 The rp-process; 1.5.3 The p-process; 1.6 Outlook. 1.6.1 Implications for nuclear physics1.6.2 Nuclear astrophysics: an open field; References; 2 Reactions of nuclei; 2.1 Kinds of states and reactions; 2.1.1 States of nuclei; 2.1.2 Kinds of reactions; 2.2 Time and energy scales; 2.2.1 Direct reactions; 2.2.2 Resonance reactions; 2.2.3 Compound nucleus reactions; 2.3 Collisions; 2.3.1 Non-relativistic kinematics; 2.3.2 Relative and center-of-mass wave functions; 2.3.3 Relativistic kinematics; 2.4 Cross sections; 2.4.1 Differential cross sections; 2.4.2 Laboratory and center of mass measures; 2.4.3 Experimental and theoretical cross sections. 2.4.4 Cross sections and scattering amplitudesExercises; References; 3 Scattering theory; 3.1 Elastic scattering from spherical potentials; 3.1.1 Partial-wave scattering from a finite spherical potential; 3.1.2 Coulomb and nuclear potentials; 3.1.3 Resonances and virtual states; 3.1.4 Nuclear currents or flux; 3.1.5 Complex potentials; 3.2 Multi-channel scattering; 3.2.1 Multiple channels; 3.2.2 Coupled equations; 3.2.3 Unitarity of the multi-channel S matrix; 3.2.4 Detailed balance; 3.3 Integral forms; 3.3.1 Green's function methods; 3.3.2 Vector-form T matrix for plane waves. 3.3.3 Two-potential formula3.3.4 Vector-form T matrix for distorted waves; 3.3.5 Born series and approximations; 3.4 Identical particles; 3.4.1 Isospin; 3.4.2 Direct and exchange amplitudes in elastic scattering; 3.4.3 Integrated cross sections; 3.4.4 Exchange transfer; 3.5 Electromagnetic channels; 3.5.1 Maxwell equations and photon channels; 3.5.2 Coupling photons and particles; 3.5.3 Photon cross sections; 3.5.4 Partial waves and vector spherical harmonics; 3.5.5 Electric and magnetic parts in the Coulomb gauge; Appendix; Exercises; References; 4 Reaction mechanisms; 4.1 Optical potentials. 4.1.1 Typical forms4.1.2 Global optical potentials; 4.1.3 Folding potentials; 4.2 Single-nucleon binding potentials; 4.2.1 Neutron and proton single-particle states in nuclei; 4.2.2 Optical potentials extended to bound states; 4.3 Coupling potentials; 4.3.1 Multipole analysis of transition potentials; 4.3.2 Spin-dependent potentials; 4.4 Inelastic couplings; 4.4.1 Collective inelastic processes; 4.4.2 Single-particle inelastic processes; 4.5 Particle rearrangements; 4.5.1 Transfer reactions; 4.5.2 Knockout reactions; 4.5.3 Breakup reactions; 4.5.4 Capture reactions; 4.6 Isospin transitions. 4.6.1 Charge-exchange reactions. Describes how the processes in stars which produce the chemical elements for planets and life may be reproduced in laboratories. Print version record. Includes bibliographical references and index. English. Nuclear astrophysics. http://id.loc.gov/authorities/subjects/sh85092945 Astrophysique nucléaire. SCIENCE Physics Astrophysics. bisacsh Nuclear astrophysics fast Kernastrophysik gnd http://d-nb.info/gnd/4194903-1 Kernphysik Astrophysik. idsbb Astrophysik Kernphysik. idsbb Electronic books. Nunes, Filomena M. has work: Nuclear reactions for astrophysics (Text) https://id.oclc.org/worldcat/entity/E39PCGC9GyfdWb6KcQJfbvxPw3 https://id.oclc.org/worldcat/ontology/hasWork Print version: Thompson, Ian J. Nuclear Reactions for Astrophysics : Principles, Calculation and Applications of Low-Energy Reactions. Cambridge : Cambridge University Press, ©2009 9780521856355 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=408856 Volltext |
spellingShingle | Thompson, Ian J. Nuclear Reactions for Astrophysics : Principles, Calculation and Applications of Low-Energy Reactions. Cover; NUCLEAR REACTIONS FOR ASTROPHYSICS; Title; Copyright; Contents; Preface; Sources of quotations; Acknowledgements; 1 Nuclei in the Cosmos; 1.1 Nuclei; 1.1.1 Properties of nuclei; 1.1.2 Nuclear reactions; 1.1.3 Forces in nuclei; 1.1.4 The Coulomb barrier; 1.2 Primordial nucleosynthesis; 1.3 Reactions in light stars; 1.3.1 Proton-proton chains; 1.3.2 Triple-a reaction; 1.3.3 CNO cycles; 1.4 Heavy stars; 1.4.1 a-burning; 1.4.2 s-process neutron reactions; 1.5 Explosive production mechanisms; 1.5.1 r-process neutron reactions; 1.5.2 The rp-process; 1.5.3 The p-process; 1.6 Outlook. 1.6.1 Implications for nuclear physics1.6.2 Nuclear astrophysics: an open field; References; 2 Reactions of nuclei; 2.1 Kinds of states and reactions; 2.1.1 States of nuclei; 2.1.2 Kinds of reactions; 2.2 Time and energy scales; 2.2.1 Direct reactions; 2.2.2 Resonance reactions; 2.2.3 Compound nucleus reactions; 2.3 Collisions; 2.3.1 Non-relativistic kinematics; 2.3.2 Relative and center-of-mass wave functions; 2.3.3 Relativistic kinematics; 2.4 Cross sections; 2.4.1 Differential cross sections; 2.4.2 Laboratory and center of mass measures; 2.4.3 Experimental and theoretical cross sections. 2.4.4 Cross sections and scattering amplitudesExercises; References; 3 Scattering theory; 3.1 Elastic scattering from spherical potentials; 3.1.1 Partial-wave scattering from a finite spherical potential; 3.1.2 Coulomb and nuclear potentials; 3.1.3 Resonances and virtual states; 3.1.4 Nuclear currents or flux; 3.1.5 Complex potentials; 3.2 Multi-channel scattering; 3.2.1 Multiple channels; 3.2.2 Coupled equations; 3.2.3 Unitarity of the multi-channel S matrix; 3.2.4 Detailed balance; 3.3 Integral forms; 3.3.1 Green's function methods; 3.3.2 Vector-form T matrix for plane waves. 3.3.3 Two-potential formula3.3.4 Vector-form T matrix for distorted waves; 3.3.5 Born series and approximations; 3.4 Identical particles; 3.4.1 Isospin; 3.4.2 Direct and exchange amplitudes in elastic scattering; 3.4.3 Integrated cross sections; 3.4.4 Exchange transfer; 3.5 Electromagnetic channels; 3.5.1 Maxwell equations and photon channels; 3.5.2 Coupling photons and particles; 3.5.3 Photon cross sections; 3.5.4 Partial waves and vector spherical harmonics; 3.5.5 Electric and magnetic parts in the Coulomb gauge; Appendix; Exercises; References; 4 Reaction mechanisms; 4.1 Optical potentials. 4.1.1 Typical forms4.1.2 Global optical potentials; 4.1.3 Folding potentials; 4.2 Single-nucleon binding potentials; 4.2.1 Neutron and proton single-particle states in nuclei; 4.2.2 Optical potentials extended to bound states; 4.3 Coupling potentials; 4.3.1 Multipole analysis of transition potentials; 4.3.2 Spin-dependent potentials; 4.4 Inelastic couplings; 4.4.1 Collective inelastic processes; 4.4.2 Single-particle inelastic processes; 4.5 Particle rearrangements; 4.5.1 Transfer reactions; 4.5.2 Knockout reactions; 4.5.3 Breakup reactions; 4.5.4 Capture reactions; 4.6 Isospin transitions. Nuclear astrophysics. http://id.loc.gov/authorities/subjects/sh85092945 Astrophysique nucléaire. SCIENCE Physics Astrophysics. bisacsh Nuclear astrophysics fast Kernastrophysik gnd http://d-nb.info/gnd/4194903-1 Kernphysik Astrophysik. idsbb Astrophysik Kernphysik. idsbb |
subject_GND | http://id.loc.gov/authorities/subjects/sh85092945 http://d-nb.info/gnd/4194903-1 |
title | Nuclear Reactions for Astrophysics : Principles, Calculation and Applications of Low-Energy Reactions. |
title_auth | Nuclear Reactions for Astrophysics : Principles, Calculation and Applications of Low-Energy Reactions. |
title_exact_search | Nuclear Reactions for Astrophysics : Principles, Calculation and Applications of Low-Energy Reactions. |
title_full | Nuclear Reactions for Astrophysics : Principles, Calculation and Applications of Low-Energy Reactions. |
title_fullStr | Nuclear Reactions for Astrophysics : Principles, Calculation and Applications of Low-Energy Reactions. |
title_full_unstemmed | Nuclear Reactions for Astrophysics : Principles, Calculation and Applications of Low-Energy Reactions. |
title_short | Nuclear Reactions for Astrophysics : |
title_sort | nuclear reactions for astrophysics principles calculation and applications of low energy reactions |
title_sub | Principles, Calculation and Applications of Low-Energy Reactions. |
topic | Nuclear astrophysics. http://id.loc.gov/authorities/subjects/sh85092945 Astrophysique nucléaire. SCIENCE Physics Astrophysics. bisacsh Nuclear astrophysics fast Kernastrophysik gnd http://d-nb.info/gnd/4194903-1 Kernphysik Astrophysik. idsbb Astrophysik Kernphysik. idsbb |
topic_facet | Nuclear astrophysics. Astrophysique nucléaire. SCIENCE Physics Astrophysics. Nuclear astrophysics Kernastrophysik Kernphysik Astrophysik. Astrophysik Kernphysik. Electronic books. |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=408856 |
work_keys_str_mv | AT thompsonianj nuclearreactionsforastrophysicsprinciplescalculationandapplicationsoflowenergyreactions AT nunesfilomenam nuclearreactionsforastrophysicsprinciplescalculationandapplicationsoflowenergyreactions |