Progress in particle and nuclear physics:
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Oxford [u.a.]
Pergamon Press
1984
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Ausgabe: | 1. ed. |
Schriftenreihe: | Progress in particle and nuclear physics
12 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | 495 S. graph. Darst. 26 cm |
ISBN: | 0080315003 |
Internformat
MARC
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035 | |a (OCoLC)74762656 | ||
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040 | |a DE-604 |b ger | ||
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049 | |a DE-11 | ||
245 | 1 | 0 | |a Progress in particle and nuclear physics |c ed. by Sir Denys Wilkinson |
250 | |a 1. ed. | ||
264 | 1 | |a Oxford [u.a.] |b Pergamon Press |c 1984 | |
300 | |a 495 S. |b graph. Darst. |c 26 cm | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 1 | |a Progress in particle and nuclear physics |v 12 | |
500 | |a Literaturangaben | ||
653 | 0 | |a Elementarteilchenphysik | |
653 | 0 | |a Kernphysik | |
700 | 1 | |a Wilkinson, Denys |d 1922-2016 |0 (DE-588)109784685 |4 edt | |
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CONTENTS
A REVIEW OF SUPERSYMMETRY AND SUPERGRAVITY
J. G.
TAYLOR 1
NEARSIDE AND FARSIDE: THE OPTICS OF HEAVY ION ELASTIC SCATTERING
M. S.
HUSSEIN
AND K. W. MCVOY 103
HYPERON-NUCLEUS POTENTIALS
C.
B.
DOVER AND
A.
GAL 171
RENORMALISATION OF THE STANDARD ELECTROWEAK MODEL
J. P.
COLE
241
DOUBLE BETA DECAY
W.
C.
HAXTON
AND G. J.
STEPHENSON,
JR. 409
AUTHOR INDEX 481
CONTENTS OF PREVIOUS VOLUMES 489
V
BIBLIOGRAFISCHE INFORMATIONEN
HTTP://D-NB.INFO/850246830
A REVIEW OF SUPERSYMMETRY
AND SUPERGRAVITY
J. G. TAYLOR
DEPARTMENT OF MATHEMATICS, KING'S COLLEGE, LONDON, U.K.
CONTENTS
1. INTRODUCTION
1.1. PREAMBLE
1.2. TOWARDS THE UNIFICATION OF ALL FORCES
1.3. THE SEARCH FOR A NEW SYMMETRY
2.
SUPERSYMMETRIC MODELS
2.1. THE WESS-ZUMINO MODEL
2.2. SUPERSYMMETRIC GAUGE THEORIES
2.3. SUPERSYMMETRY BREAKING
2.4. TOWARDS A REALISTIC SUSY GAUGE MODEL
*2.5. EXTENDED SUPERSYMMETRIC GAUGE THEORIES
3. SUPERGRAVITY
3.1. THE CONSTRUCTION OF SUPERGRAVITY
3.2. EXTENDED SUPERGRAVITIES
3.3. SUPERGRAVITY IN HIGHER DIMENSIONS
3.4. N = 8 SUPERGRAVITY AND FURTHER SYMMETRIES
3.5. SPONTANEOUS COMPACTIFICATIONS
3.6. SUPERUNIFICATION
4.
GLOBAL SUPERSPACE
4.1. THE SUPER-POINCARE ALGEBRA
4.2. SUPERFIELDS
4.3. THE WESS-ZUMINO MODEL IN SUPERSPACE
4.4. SUPERGRAPH RULES
5.
GAUGED SUPERSPACE
5.1. SUPERSYMMETRIC GAUGE THEORIES
5.2. N = 1 SYM IN SUPERSPACE
*5.3. N = 2 SYM IN SUPERSPACE
5.4. THE N = 3 BARRIER IN GAUGED SUPERSPACE
5.5. QUANTUM PROPERTIES OF SUPERGAUGE THEORIES
*5.6. SYM IN LIGHT CONE SUPERSPACE
6. LOCAL SUPERSPACE
6.1. SUPER-DIFFERENTIAL GEOMETRY
6.2. DISCOVERING AUXILIARY FIELDS
6.3. CONSTRAINED SUPERSPACE
6.4. SUPERSPACE SUPERGRAVITY ACTIONS
6.5. SUPERGRAVITY ULTRA-VIOLET DIVERGENCES
6.6. THE
N = 3 BARRIER IN LOCAL SUPERSPACE
*6.7. CENTRAL CHARGES
7. CONCLUSIONS AND FUTURE DIRECTIONS
ACKNOWLEDGEMENTS
REFERENCES
1
1
2
8
11
II
14
15
20
27
30
30
32
33
35
38
40
43
43
47
52
53
55
55
56
58
60
64
67
71
71
74
79
85
86
88
91
95
96
96
CONTENTS
1. INTRODUCTION 104
1.1. PURPOSE OF THE REVIEW 104
1.2. THE 2-SLIT PATTERN FOR ABSORBERS: EDGE WAVES 105
1.3. EXAMPLES OF NEAR-SIDE/FAR-SIDE DECOMPOSITIONS 108
1.4. GEOMETRY-DOMINANCE IN BORN APPROXIMATION 111
1.5. FURTHER EXAMPLES 114
2.
ELEMENTARY SEMI-CLASSICAL TECHNIQUES AND IMPORTANT OPTICAL THEOREMS
117
2.1. THE STATIONARY-PHASE OR SADDLE-POINT APPROXIMATION TO OSCILLATORY
INTEGRALS 118
2.2. THE NEAR/FAR DECOMPOSITION 119
2.2.1.
PHYSICAL IDEAS AND APPROXIMATE FORMULAE 119
SUPPORTED IN PART BY THE CNPQ, BRAZIL AND NSF, USA.
103
104
M. S. HUSSEIN AND K. W. MCVOY
2.2.2.
ESSENTIAL PROPERTIES: 121
2.2.2.1. "EXPLORING THE POTENTIAL" 121
22.2.2.
SINGLE-TRAJECTORY DOMINANCE OF RN AND RF 122
2.2.2.3. RUNNING WAVES IN ANGLE 122
2.2.2.4. REAL PHASE SHIFTS AND RAINBOW SHADOWS 122
2.2.2.5. ABSORPTION AND DIFFRACTIVE SHADOWS 124
2.2.3. THE CORRECT MATHEMATICS, A LA FULLER 124
3. A FEW ESSENTIAL PROPERTIES
OF HEAVY-ION ANGULAR DISTRIBUTIONS 125
3.1. EXPONENTIAL SHADOW TAILS FROM PERIPHERAL /-WINDOWS 125
3.2. BABINET SYMMETRY FOR PURE ABSORBERS 126
3.3. THE SINGLE-SLIT EDGE WAVE OF AN ABSORBER 127
3.4. SLOPES OF EXPONENTIAL SHADOWS: ORBITING AT COMPLEX/ 128
3.5. EXTERNAL REFRACTORS: THE COULOMB PRISM 132
4.
PRACTICAL APPLICATIONS AND EXAMPLES
134
4.1. SUMMARY OF SECTIONS 2 AND 3 134
4.2. THE INFLUENCE OF NUCLEAR REFRACTION:
9BE +160 AT 158 MEV 135
4.3. NUCLEAR RAINBOWS? 138
4.4. A HIDDEN RAINBOW 144
4.5. THE CASE OF THE TRANSPARENT SURFACE 144
4.6. POTENTIAL AMBIGUITIES 148
4.7. JUST FOR FUN 153
4.7.1.
ANOTHER HIDDEN RAINBOW? 153
4.7.2.
A BIZARRE OT-DIP
153
4.7.3.
A PURE COULOMB RAINBOW 154
4.7.4.
PURE GLASS
155
5.
NUCLEAR FORWARD-GLORY SCATTERING 155
6. DEVIATIONS FROM OPTICAL BEHAVIOR 158
6.1. ANOMALOUS BACK-ANGLE SCATTERING 158
6.2. STATIC AND DYNAMIC DEFORMATION EFFECTS: LONG RANGE ABSORPTION 160
7. SUMMARY 163
ACKNOWLEDGEMENTS 165
REFERENCES 165
NOTES ADDED IN PROOF 166
APPENDIX A. THE DEFLECTION FUNCTION AND FERMAT : LENSES AS
PHASE-SHIFTERS 167
APPENDIX B. THE KNOLL SCHAEFFER-GLAUBER-BORN APPROXIMATION TO THE
DEFLECTION FUNCTION 169
IN THE
E
V
LIMIT
RENORMALISATION OF THE STANDARD
ELECTROWEAK MODEL
J. P. COLE
PHYSICS DIVISION, MAPS, UNIVERSITY OF SUSSEX, BRIGHTON, BN1 9QH, EAST
SUSSEX, U.K.
CONTENTS
NOTATION, SYMBOLS AND ABBREVIATIONS
242
INTRODUCTION
243
1.
INTRODUCTION TO GAUGE THEORIES
245
1.1. SYMMETRIES IN FIELD THEORIES 245
1.2. GAUGE FIELDS 247
1.3. YANG-MILLS FIELD 248
1.4. SPONTANEOUSLY BROKEN SYMMETRY 249
2.
QUANTISATION OF FIELD THEORIES AND THE STANDARD ELECTROWEAK MODEL
252
2.1. QUANTISATION OF SCALAR FIELD THEORY 252
2.2. QUANTISATION OF GAUGE THEORIES 257
2.3. THE STANDARD ELECTROWEAK MODEL 261
3. RENORMALISATION OF THE MODEL
272
3.1. RENORMALISATION OF THEORY 272
3.2. RENORMALISATION OF THE VECTOR BOSON PROPAGATOR 276
3.3. RENORMALISATION OF THE FERMION PROPAGATOR 278
3.4. EXAMPLE CALCULATIONS IN QED 279
3.5. OTHER SCHEMES OF RENORMALISATION 283
3.6. RENORMALISATION OF THE GWS MODEL (PART 1) 285
3.7. RENORMALISATION OF THE GWS MODEL (PART 2) 292
4. GAUGE INVARIANCE AND RENORMALISATION 296
4.1. THE FERMION SELF-ENERGIES 297
4.2. THE FERMION CHARGES 301
4.3. THE FERMION-Z COUPLING 305
4.4. GAUGE-INVARIANCE OF THE NEUTRAL CURRENT SCATTERING AMPLITUDES 307
4.5. GAUGE-INVARIANCE OF THE CHARGED SCATTERING AMPLITUDES 315
4.6. SEARCH FOR A FOURTH CONDITION 320
5. CALCULATION OF THE RENORMALISATION CONSTANTS
328
5.1. THE FERMION SELF-ENERGIES 328
5.2. GENERAL THREE-POINT FUNCTIONS 329
5.3. THE FERMION CHARGES 331
5.4. THE BOSON RENORMALISATION CONSTANTS 333
6. ONE LOOP DIAGRAMS 338
6.1. WEAK CORRECTIONS TO THE NEUTRAL CURRENTS 338
6.1.1.
VERTEX CORRECTIONS 338
6.1.2.
BOSONIC CORRECTIONS 340
6.1.3.
THE BOX DIAGRAMS
342
6.2. WEAK CORRECTIONS TO THE CHARGED CURRENTS 344
6.2.1.
VERTEX CORRECTIONS 344
6.2.2.
THE BOX DIAGRAMS 346
6.2.3.
THE W-BOSON SELF-ENERGY 348
6.3. PHOTONONIC CORRECTIONS 348
6.3.1.
BOX DIAGRAMS 349
6.3.2.
VERTEX CORRECTIONS 349
6.3.3.
THE BREMFITRAHLUNG CROSS-SECTIONS 351
6.3.4.
THE FINITE RESULTS 351
241
242
J. P. COLE
7. EXPERIMENTAL CORRECTIONS 353
7.1. NEUTRINO EXPERIMENTS
353
7.2. THE CORRECTIONS TO THE FERMI COUPLING CONSTANT, G
F 361
7.3. POLARISED ELECTRON SCATTERING EXPERIMENTS 365
7.4. CONCLUSIONS
371
APPENDIX
1.
THE SOLUTION OF TENSOR EQUATIONS156'
372
APPENDIX
2.
THE DIMENSIONAL REGULARISATION METHOD 373
A.2.1. FEYNMAN PARAMETRISATION
373
A.2.2. FORMULAE OF DIMENSIONAL REGULARISATION 375
APPENDIX
3.
GAMMA MATRIX ALGEBRA
379
A.3.1. TRACE IDENTITIES 380
A.3.2. MATRIX IDENTITIES 380
A.3.3. S-TENSOR IDENTITIES 381
A.3.4. MATRICES BETWEEN DIRAC SPINORS 381
A.3.5.
V, A MATRICES 382
APPENDIX
4.
TADPOLE CONTRIBUTIONS TO BOSON SELF-ENERGIES
383
APPENDIX
5.
CALCULATION OF PARAMETER INTEGRALS
385
APPENDIX
6.
NUMERICAL ANALYSIS OF THE RESULTS
395
A.6.1. BOSON SELF-ENERGIES
397
A.6.2. WEAK CORRECTIONS TO THE V-SCATTERING CROSS-SECTIONS 397
A.6.3. PHOTONIC CORRECTIONS TO THE V-SCATTERING CROSS-SECTIONS 398
A.6.4, WEAK CORRECTIONS TO
E-D SCATTERING ASYMMETRY 403
APPENDIX
7.
A NOTE ON THE MINIMAL SUBTRACTION SCHEME
403
A.7.1. QED 405
A.7.2. GWS MODEL 406
REFERENCES
407
CONTENTS
1. INTRODUCTION
2. EXPERIMENTAL EVIDENCE
2.1. OCCURRENCE OF PP DECAY
2.2. DIRECT DETECTION EXPERIMENTS
2.3. GEOCHEMICAL HALF LIFE DETERMINATIONS
2.4. RADIOCHEMICAL EXPERIMENTS
3. THEORETICAL TREATMENT
3.1. THE HAMILTONIAN
3.2. THE NEUTRINO MASS MATRIX AND CP PROPERTIES
3.3. DERIVATION OF TWO-NUCLEON 2V AND OV PP DECAY RATES
3.3.1. TWO-NUCLEON MECHANISMFOR 2V 0+ -0+ DECAY IN THE STANDARD MODEL
3.3.2.
TWO-NEUTRINO 0+ -*
YY
1+ AND 0+ -*2+ DECAYS
3.3.3. TWO-NUCLEON MECHANISM FOR OV 0+ -0+ DECAYS
3.3.4. NEUTRINOLESS 0+ -1+ AND0+ -* 2* DECAYS
3.4. THE NEUTRINO PROPAGATOR FOR LIGHT AND HEAVY NEUTRINOS
3.4.1. FIRST APPROXIMATION: LIGHT OR HEAVY NEUTRINOS
3.4.2. LIGHT NEUTRINOS
3.4.3. EFFECTS DUE TO FINITE NUCLEAR SIZE
3.4.4.
CORRELATIONS
3.5. THE NEUTRINO MASS IN PP AND CONSTRAINTS IMPOSED BY CP CONSERVATION
3.5.1. DIRAC LIMIT
3.5.2. MAJORANALIMXT
3.5.3.
DOMINANT RIGHT-HANDED MASS LIMIT
3.5.4. PSEUDO-DIRAC LIMIT
3.6. TRANSITIONS INVOLVING NUCLEON ISOBARS
3.7. MECHANISMS BEYOND THE STANDARD MODEL
3.8. POSITRON-EMITTING ELECTRON CAPTURE AND DOUBLE ELECTRON CAPTURE
4.
NUCLEAR STRUCTURE
4.1. GENERAL OBSERVATIONS
4.2. NUCLEAR CALCULATIONS
4.3. OTHER STRUCTURE STUDIES
4.4. THEORETICAL APPROXIMATIONS: ARE THERE ANY SURPRISES?
5.
RATES FOR
PP
DECAY AND LIMITS ON LEPTON NUMBER VIOLATION
5.1. 0+ -+ 0+ AND 0+ -2+ 2V DECAY RATES
5.2. 0+ -* 0+ OV DECAY AND LIGHT-MASS NEUTRINOS
5.3. 0+ -
YY
0+ OV DECAY MEDIATED BY HEAVY NEUTRINOS
5.4. 0+ -2+ OV DECAY
6
. SUMMARY AND CONCLUSIONS
APPENDIX: COULOMB CORRECTIONS AND PHASE-SPACE ESTIMATES OF 2V HALF LIVES
REFERENCES
410
413
413
417
421
425
425
425
427
430
430
435
436
440
443
443
444
444
445
445
446
447
447
447
448
450
451
452
452
453
455
458
459
459
460
469
471
472
473
475
* WORK PERFORMED UNDER THE AUSPICES OF THE U.S. DEPARTMENT OF ENERGY AND
THE NATIONAL SCIENCE FOUNDATION,
T PERMANENT ADDRESS.
409 |
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series2 | Progress in particle and nuclear physics |
spelling | Progress in particle and nuclear physics ed. by Sir Denys Wilkinson 1. ed. Oxford [u.a.] Pergamon Press 1984 495 S. graph. Darst. 26 cm txt rdacontent n rdamedia nc rdacarrier Progress in particle and nuclear physics 12 Literaturangaben Elementarteilchenphysik Kernphysik Wilkinson, Denys 1922-2016 (DE-588)109784685 edt Progress in particle and nuclear physics 12 (DE-604)BV000031435 12 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024572058&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Progress in particle and nuclear physics Progress in particle and nuclear physics |
title | Progress in particle and nuclear physics |
title_auth | Progress in particle and nuclear physics |
title_exact_search | Progress in particle and nuclear physics |
title_full | Progress in particle and nuclear physics ed. by Sir Denys Wilkinson |
title_fullStr | Progress in particle and nuclear physics ed. by Sir Denys Wilkinson |
title_full_unstemmed | Progress in particle and nuclear physics ed. by Sir Denys Wilkinson |
title_short | Progress in particle and nuclear physics |
title_sort | progress in particle and nuclear physics |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024572058&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV000031435 |
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