Attosecond and XUV physics: ultrafast dynamics and spectroscopy
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Format: | Abschlussarbeit Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
2014
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Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | XVI, 607 S. Ill., graph. Darst. |
ISBN: | 9783527411245 9783527677689 |
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245 | 1 | 0 | |a Attosecond and XUV physics |b ultrafast dynamics and spectroscopy |c ed. by Thomas Schultz ... |
264 | 1 | |a Weinheim |b Wiley-VCH |c 2014 | |
300 | |a XVI, 607 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
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CONTENTS
LIST OF CONTRIBUTORS XIII
'I ATTOSECOND AND XUV
PHYSICS: ULTRAFAST DYNAMICS AND SPECTROSCOPY 1
MARC VRAKKING
1.1 INTRODUCTION 1
1.2 THE EMERGENCE OF ATTOSECOND SCIENCE 2
1.2.1 ATTOSECOND PULSE TRAINS AND ISOLATED ATTOSECOND PULSES
3
1.2.2 CHARACTERIZATION OF ATTOSECOND LASER PULSES 4
1.2.3 EXPERIMENTAL CHALLENGES IN ATTOSECOND SCIENCE 5 .
1.2.4 ATTOSECOND SCIENCE AS A DRIVER FOR TECHNOLOGICAL DEVELOPMENTS 6
1.3 APPLICATIONS OF ATTOSECOND LASER PULSES 7
1.4 ULTRAFAST SCIENCE USING XUV/X-RAY FREE ELECTRON LASERS 9
1.5 THE INTERPLAY BETWEEN EXPERIMENT AND THEORY 11
1.6 CONCLUSION AND OUTLOOK
12
REFERENCES
13
PART ONE LASER TECHNIQUES
17
2 ULTRAFAST LASER OSCILLATORS AND AMPLIFIERS
19
UWE MORGNER
2.1 INTRODUCTION
19
2.2 MODE-LOCKING AND FEW-CYCLE PULSE GENERATION 20
2.3 HIGH-ENERGY OSCILLATORS
23
2.4 LASER AMPLIFIERS 25
REFERENCES 29
3 ULTRASHORT PULSE CHARACTERIZATION
37
ADAM S. WYATT
3.1 MOTIVATION: WHY ULTRAFAST METROLOGY?
37
3.1.1 ULTRAFAST SCIENCE: HIGH-SPEED PHOTOGRAPHY IN THE EXTREME 38
3.2 FORMAL DESCRIPTION OF ULTRASHORT PULSES 42
3.2.1 SAMPLING THEOREM 45
3.2.2 CHRONOCYCLIC REPRESENTATION OF ULTRAFAST PULSES 46
3.2.3 SPACE-TIME COUPLING 46
3.2.4 ACCURACY, PRECISION AND CONSISTENCY 49
HTTP://D-NB.INFO/1034510878
VI | CONTENTS
3.3 LINEAR FILTER ANALYSIS 51
3.4 ULTRAFAST METROLOGY IN THE VISIBLE TO INFRARED
53
3.4.1 TEMPORAL CORRELATIONS 53
3.4.2 SPECTROGRAPHY 55
3.4.3 SONOGRAPHY 60
3.4.4 TOMOGRAPHY
60
3.4.5 INTERFEROMETRY 63
3.5 ULTRAFAST METROLOGY IN THE EXTREME ULTRAVIOLET 73
3.5.1 COMPLETE CHARACTERIZATION OF ULTRASHORT XUV PULSES
VIA PHOTOIONIZATION SPECTROSCOPY 75
3.5.2 XUV INTERFEROMETRY
81
3.6 SUMMARY
85
REFERENCES 85
4 CARRIER ENVELOPE PHASE STABILIZATION 95
VINCENT CROZATIER
4.1 INTRODUCTION 95
4.2 CEP FUNDAMENTALS 96
4.2.1 TIME DOMAIN REPRESENTATION 96
4.2.2 FREQUENCY DOMAIN REPRESENTATION 97
4.3 STABILIZATION LOOP FUNDAMENTALS 99
4.3.1 THE NOISY SOURCE 99
4.3.2 NOISE DETECTION
100
4.3.3 OPEN-LOOP NOISE ANALYSIS
101
4.3.4 FEEDBACK
102
4.3.5 CLOSED-LOOP NOISE ANALYSIS
103
4.4 CEP IN OSCILLATORS
104
4.4.1 OSCILLATORS PECULIARITIES
105
4.4.2 CEP DETECTION
107
4.4.3 ACTUATION
110
4.5 CEP IN AMPLIFIERS
115
4.5.1 AMPLIFIER PECULIARITIES
116
4.5.2 CEP DETECTION
119
4.5.3 ACTUATION
123
4.5.4 FEEDBACK RESULTS
124
4.5.5 PARAMETRIC AMPLIFICATION 126
4.6 CONCLUSION
129
REFERENCES
129
5 TOWARDS TABLETOP X-RAY LASERS
135
PHILIPPE ZEITOUN, EDUARDO OLIVA, THI THU THUY LE, STEPHANE SEBBAN,
MARTA FAJARDO,
DAVID ROS, AND PEDRO VELARDE
5.1 CONTEXT AND OBJECTIVES
135
5.2 CHOICE OF PLASMA-BASED SOFT X-RAY AMPLIFIER
137
5.2.1 BASIC ASPECTS OF HIGH HARMONIC AMPLIFICATION
138
5.2.2 BASIC ASPECTS OF PLASMA AMPLIFIERS
140
CONTENTS IVII
5.3 2D FLUID MODELING AND 3D RAY TRACE
141
5.3.1 ARWEN CODE
142
5.3.2 MODEL TO OBTAIN 2D MAPS OF ATOMIC DATA
143
5.4 THE BLOCH-MAXWELL TREATMENT
149
5.5 STRETCHED SEED AMPLIFICATION
157
5.6 CONCLUSION
170
REFERENCES
171
PART TWO THEORETICAL METHODS
177
6 IONIZATION IN STRONG LOW-FREQUENCY
FIELDS 179
MISHA IVANOV
6.1 PRELIMINARIES
179
6.2 SPECULATIVE THOUGHTS
179
6.3 BASIC FORMALISM
181
6.3.1 HAMILTONIANS AND GAUGES
181
6.3.2 FORMAL SOLUTIONS
182
6.4 THE STRONG-FIELD APPROXIMATION
184
6.4.1 THE VOLKOV PROPAGATOR AND THE CLASSICAL CONNECTION
185
6.4.2 TRANSITION AMPLITUDES IN THE SFA
186
6.5 STRONG-FIELD IONIZATION: EXPONENTIAL VS. POWER LAW
189
6.5.1 THE SADDLE POINT APPROXIMATION AND THE CLASSICAL CONNECTION
190
6.6 SEMIDASSICAL PICTURE OF HIGH HARMONIC GENERATION
19
5
6.7 CONCLUSION
198
REFERENCES
199
7 MULTIELECTRON HIGH HARMONIC GENERATION: SIMPLE MAN ON
A COMPLEX PLANE
201
OLGA SMIMOVA AND MISHA IVANOV
7.1 INTRODUCTION
201
7.2 THE SIMPLE MAN MODEL OF HIGH HARMONIC GENERATION (HHG)
203
7.3 FORMAL APPROACH FOR ONE-ELECTRON SYSTEMS
205
7.4 THE LEWENSTEIN MODEL: SADDLE POINT EQUATIONS FOR HHG 209
7.5 ANALYSIS OF THE COMPLEX TRAJECTORIES
214
7.6 FACTORIZATION OF THE HHG DIPOLE: SIMPLE MAN ON A COMPLEX PLANE
221
7.6.1 FACTORIZATION OF THE HHG DIPOLE IN THE FREQUENCY DOMAIN
222
7.6.2 FACTORIZATION OF THE HHG DIPOLE IN THE TIME DOMAIN
224
7.7 THE PHOTOELECTRON MODEL OF HHG: THE IMPROVED SIMPLE MAN 227
7.8 THE MULTICHANNEL MODEL OF HHG: TACKLING MULTIELECTRON SYSTEMS
231
7.9 OUTLOOK
238
7.10 APPENDIX A: SUPPLEMENTARY DERIVATIONS
241
7.11 APPENDIX B: THE SADDLE POINT METHOD
242
7.11.1 INTEGRALS ON THE REAL AXIS 243
7.11.2 STATIONARY PHASE METHOD
248
7.12 APPENDIX C: TREATING THE CUTOFF REGION: REGULARIZATION OF DIVERGENT
STATIONARY PHASE SOLUTIONS
250
VIII
| CONTENTS
7.13 APPENDIX D: FINDING SADDLE POINTS FOR THE LEWENSTEIN MODEL
251
REFERENCES 253
8 TIME-DEPENDENT SCHRDDINGER EQUATION
257
ARMIN SCRINZI
8.1 ATOMS AND MOLECULES IN LASER FIELDS
258
8.2 SOLVING THE TDSE 259
8.2.1 DISCRETIZATION OF THE TDSE
260
8.2.2 FINITE ELEMENTS 263
8.2.3 SCALING WITH LASER PARAMETERS 265
8.3 TIME PROPAGATION 266
8.3.1 RUNGE-KUTTA METHODS 267
8.3.2 KRYLOV SUBSPACE METHODS 268
8.3.3 SPLIT-STEP METHODS 269
8.4 ABSORPTION OF OUTGOING FLUX 269
8.4.1 ABSORPTION FOR A ONE-DIMENSIONAL TDSE 270
8.5 OBSERVABLES 272
8.5.1 IONIZATION AND EXCITATION 272
8.5.2 HARMONIC RESPONSE
274
8.5.3 PHOTOELECTRON SPECTRA 275
8.6 TWO-ELECTRON SYSTEMS
278
8.6.1 VERY LARGE-SCALE GRID-BASED APPROACHES
278
8.6.2 BASIS AND PSEUDOSPECTRAL APPROACHES
278
8.7 FEW-ELECTRON SYSTEMS 282
8.7.1 MCTDHF: MULTICONFIGURATION TIME-DEPENDENT HARTREE-FOCK
283
8.7.2 DYNAMICAL MULTIELECTRON EFFECTS IN HIGH HARMONIC GENERATION
285
8.8 NUCLEAR MOTION
287
REFERENCES 290
9 ANGULAR DISTRIBUTIONS IN MOLECULAR PHOTOIONIZATION 293
ROBERT
R. LUCCHESE AND
DANIELLE
DOWEK
9.1 INTRODUCTION 293
9.2 ONE-PHOTON PHOTOIONIZATION IN THE MOLECULAR FRAME 297
9.3 METHODS FOR COMPUTING CROSS-SECTIONS 302
9.4 POST-ORIENTATION MFPADS
304
9.4.1 MFPADS FOR LINEAR MOLECULES IN THE AXIAL RECOIL APPROXIMATION
304
9.4.2 MFPADS FOR NONLINEAR MOLECULES IN THE AXIAL RECOIL APPROXIMATION
306
9.4.3 BREAKDOWN OF THE AXIAL RECOIL APPROXIMATION DUE TO ROTATION
308
9.4.4 BREAKDOWN OF THE AXIAL RECOIL APPROXIMATION DUE TO VIBRATIONAL
MOTION 309
9.4.5 ELECTRON FRAME PHOTOELECTRON ANGULAR DISTRIBUTIONS 309
9.5 MFPADS FROM CONCURRENT ORIENTATION IN MULTIPHOTON IONIZATION
310
9.6 PRE-ORIENTATION OR ALIGNMENT, IMPULSIVE ALIGNMENT
314
9.7 CONCLUSIONS
315
REFERENCES
315
CONTENTS | IX
PART THREE HIGH HARMONIC GENERATION AND ATTOSECOND PULSES
321
10 HIGH-ORDER
HARMONIC GENERATION AND ATTOSECOND LIGHT
PULSES:
AN INTRODUCTION
323
ANNE L'HUILLIER
10.1 EARLY WORK, 1987-1993
323
10.2 THREE-STEP MODEL, 1993-1994
325
10.3 TRAJECTORIES AND PHASE MATCHING, 1995-2000
328
10.4 ATTOSECOND PULSES 2001
331
10.5 CONCLUSION
332
REFERENCES
335
11 STRONG-FIELD INTERACTIONS AT LONG WAVELENGTHS
339
MANUEL KREMER, COSMIN I. BLAGA, ANTHONY D. DICHIARA, STEPHEN B. SCHOUN,
PIERRE AGOSTINI, AND
LOUIS F. DIMAURO
11.1 THEORETICAL BACKGROUND
340
11.1.1 KELDYSH PICTURE OF IONIZATION IN STRONG FIELDS
340
11.1.2 CLASSICAL PERSPECTIVES ON POSTIONIZATION DYNAMICS
341
11.1.3 HIGH-HARMONIC GENERATION
342
11.1.4 WAVELENGTH SCALING OF HIGH-HARMONIC CUTOFF AND ATTOCHIRP
342
11.1.5 IN-SITU AND RABB ITT TECHNIQUE
344
11.2 MID-IR SOURCES AND BEAMLINES AT OSU
346
11.2.1 2-PM SOURCE
346
11.2.2 3.6-PM SOURCE
347
11.2.3 OSU ATTOSECOND BEAMLINE
347
11.3 STRONG-FIELD IONIZATION: THE SINGLE-ATOM RESPONSE
34S
11.4 HIGH-HARMONIC GENERATION
350
11.4.1 HARMONIC CUTOFF AND HARMONIC YIELD
350
11.4.2 ATTOCHIRP 352
11.4.3 IN-SITU PHASE MEASUREMENT 352
11.4.4 RABBITT METHOD 355
11.5 CONCLUSIONS AND FUTURE PERSPECTIVES 356
REFERENCES
356
12 ATTOSECOND DYNAMICS IN ATOMS 361
GIUSEPPE SANSONE, FRANCESCO
CALEGARI, MATTEO LUCCHINI, AND MAURO NISOLI
12.1 INTRODUCTION 361
12.2 SINGLE-ELECTRON ATOM: HYDROGEN 362
12.3 TWO-ELECTRON ATOM: HELIUM
365
12.3.1 ELECTRONIC WAVE PACKETS 366
12.3.2 AUTOIONIZATION: FANO PROFILE
371
12.3.3 TWO-PHOTON DOUBLE IONIZATION
373
12.4 MULTIELECTRON SYSTEMS
380
12.4.1 NEON: DYNAMICS OF SHAKE-UP STATES
381
12.4.2 NEON: DELAY IN PHOTOEMISSION
384
12.4.3 ARGON: FANO RESONANCE 386
X | CONTENTS
12.4.4 KRYPTON: AUGER DECAY
388
12.4.5 KRYPTON: CHARGE OSCILLATION 390
12.4.6 XENON: CASCADED AUGER DECAY
391
REFERENCES
393
13 APPLICATION OF ATTOSECOND PULSES TO MOLECULES 395
FRANCK
LEPINE
13.1 ATTOSECOND DYNAMICS IN MOLECULES 395
13.2 STATE-OF-THE-ART EXPERIMENTS USING ATTOSECOND PULSES 397
13.2.1 ION SPECTROSCOPY
398
13.2.2 ELECTRON SPECTROSCOPY
402
13.2.3 PHOTO ABSORPTION
404
13.3 THEORETICAL WORK
405
13.3.1 ELECTRON DYNAMICS IN SMALL MOLECULES
405
13.3.2 ELECTRON DYNAMICS IN LARGE MOLECULES 406
13.4 PERSPECTIVES
413
13.4.1 MOLECULAR ALIGNMENT AND ORIENTATION
413
13.4.2 ELECTRON DELOCALIZATION BETWEEN DNA GROUP JUNCTION
414
13.4.3 SIMILAR DYNAMICS IN WATER AND ICE 416
13.4.4 MORE
416
13.5 CONCLUSION
416
REFERENCES
417
14 ATTOSECOND NANOPHYSICS
421
FREDERIK
SUJIMANN, SARAH L. STEBBINGS, SERGEY
ZHEREBTSOV, SOO
HOON CHEW,
MARK I. STOCKMAN, ECKART RUHL, ULF KLEINEBERG, THOMAS FENNEL, AND
MATTHIAS F. KLING
14.1 INTRODUCTION
421
14.2 ATTOSECOND LIGHT-FIELD CONTROL OF ELECTRON EMISSION AND
ACCELERATION
FROM NANOPARTICLES 425
14.2.1 IMAGING OF THE ELECTRON EMISSION FROM ISOLATED NANOPARTICLES 426
14.2.2 MICROSCOPIC ANALYSIS OF THE ELECTRON EMISSION
429
14.3 FEW-CYCLE PUMP-PROBE ANALYSIS OF CLUSTER PLASMONS
433
14.3.1 BASICS OF SPECTRAL INTERFEROMETRY
433
14.3.2 OSCILLATOR MODEL RESULTS FOR EXCITATION WITH GAUSSIAN PULSES
435
14.3.3 SPECTRAL INTERFEROMETRY ANALYSIS OF PLASMONS IN SMALL SODIUM
CLUSTERS 437
14.4 MEASUREMENTS OF PLASMONIC FIELDS WITH ATTOSECOND TIME
RESOLUTION 439
14.4.1 ATTOSECOND NANOPLASMONIC STREAKING 439
14.4.2 THE REGIMES OF APS SPECTROSCOPY
441
14.4.3 APS SPECTROSCOPY OF COLLECTIVE ELECTRON DYNAMICS IN ISOLATED
NANOPARTICLES
442
14.4.4 ATTOSECOND NANOSCOPE
444
14.4.5 EXPERIMENTAL IMPLEMENTATION OF THE ATTOSECOND NANOSCOPE 446
14.5 NANOPLASMONIC FIELD-ENHANCED XUV GENERATION
449
CONTENTS I XI
14.5.1 TAILORING OF NANOPLASMONIC FIELD ENHANCEMENT FOR HHG
450
14.5.2 GENERATION OF SINGLE ATTOSECOND XUV PULSES IN NANO-HHG 452
14.6 CONCLUSIONS AND OUTLOOK 454
REFERENCES
455
PART FOUR ULTRA INTENSE X-RAY
FREE ELECTRON
LASER EXPERIMENTS 463
15 STRONG-FIELD INTERACTIONS AT EUV
AND X-RAY WAVELENGTHS 465
ARTEM RUDENKO
15.1 INTRODUCTION 465
15.2 EXPERIMENTAL BACKGROUND 467
15.2.1 WHAT IS A "STRONG" FIELD?
467
15.2.2 BASIC PARAMETERS OF INTENSE HIGH-FREQUENCY RADIATION SOURCES 469
15.2.3 DETECTION SYSTEMS
471
15.3 ATOMS AND MOLECULES UNDER INTENSE EUV LIGHT
473
15.3.1 TWO-PHOTON SINGLE IONIZATION OF HELIUM
473
15.3.2 FEW-PHOTON DOUBLE IONIZATION OF HELIUM AND NEON
476
15.3.3 MULTIPLE IONIZATION OF ATOMS 485
15.3.4 EUV-INDUCED FRAGMENTATION OF SIMPLE MOLECULES
487
15.4 EUV PUMP-EUV PROBE EXPERIMENTS
493
15.4.1 SPLIT-AND-DELAY ARRANGEMENTS AND CHARACTERIZATION OF THE EUV
PULSES 493
15.4.2 NUCLEAR WAVE PACKET IMAGING IN DIATOMIC MOLECULES 495
15.4.3 ISOMERIZATION DYNAMICS OF ACETYLENE CATIONS 498
15.5 EXPERIMENTS IN THE X-RAY DOMAIN 499
15.5.1 MULTIPLE IONIZATION OF HEAVY ATOMS: ROLE OF RESONANT EXCITATIONS
500
15.5.2 MULTIPHOTON IONIZATION OF MOLECULES CONTAINING HIGH-Z ATOMS 506
15.6 SUMMARY AND OUTLOOK
510
REFERENCES
512
16 ULTRAINTENSE X-RAY INTERACTIONS AT THE LINAC COHERENT LIGHT SOURCE
529
LINDA YOUNG
16.1 INTRODUCTION 529
16.1.1 COMPARISON OF ULTRAFAST, ULTRAINTENSE OPTICAL, AND X-RAY LASERS
531
16.1.2 X-RAY ATOM INTERACTIONS 533
16.2 ATOMIC AND MOLECULAR RESPONSE TO ULTRAINTENSE X-RAY PULSES 536
16.2.1 NONRESONANT HIGH-INTENSITY X-RAY PHENOMENA
537
16.2.2 RESONANT HIGH-INTENSITY X-RAY PHENOMENA 540
16.3 ULTRAFAST X-RAY PROBES OF DYNAMICS
543
16.4 CHARACTERIZATION OF LCLS PULSES 544
16.5 OUTLOOK 546
REFERENCES 549
17 COHERENT DIFFRACTIVE IMAGING
557
WILLEM BOUTU, BETRAND CARRE, AND HAMED MERDJI
17.1 INTRODUCTION 557
17.2 FAR-FIELD DIFFRACTION 559
XIII
CONTENTS
1
17.2.1
OPTICAL POINT OF VIEW 559
17.2.2
BORN APPROXIMATION
561
17.2.3
RESOLUTION 562
17.2.4
COMMENTS ON THE APPROXIMATIONS 564
17.3
SOURCE REQUIREMENTS 565
17.3.1
COHERENCE 565
17.3.2
SIGNAL-TO-NOISE RATIO 568
17.3.3
DOSE 569
17.3.4
DIFFERENT XUV SOURCES COMPARISON 572
17.4
SOLVING THE PHASE PROBLEM 572
17.4.1
OVERSAMPLING METHOD 572
17.4.2
BASICS ON ITERATIVE PHASING ALGORITHMS 574
17.4.3
IMPLEMENTATIONS OF PHASE RETRIEVAL ALGORITHMS 577
17.5 HOLOGRAPHY 583
17.5.1
FOURIER TRANSFORM HOLOGRAPHY 583
17.5.2
HERALDO 587
17.6
CONCLUSIONS 590
REFERENCES 592
INDEX 599 |
any_adam_object | 1 |
author2 | Schultz, Thomas ca. 1972 - |
author2_role | edt |
author2_variant | t s ts |
author_GND | (DE-588)1048170705 |
author_facet | Schultz, Thomas ca. 1972 - |
building | Verbundindex |
bvnumber | BV041620087 |
classification_rvk | UH 5618 |
classification_tum | PHY 387 |
ctrlnum | (OCoLC)864668424 (DE-599)DNB1034510878 |
dewey-full | 535.2 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 535 - Light and related radiation |
dewey-raw | 535.2 |
dewey-search | 535.2 |
dewey-sort | 3535.2 |
dewey-tens | 530 - Physics |
discipline | Physik |
format | Thesis Book |
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genre | (DE-588)4143413-4 Aufsatzsammlung gnd-content (DE-588)4113937-9 Hochschulschrift gnd-content |
genre_facet | Aufsatzsammlung Hochschulschrift |
id | DE-604.BV041620087 |
illustrated | Illustrated |
indexdate | 2024-09-10T01:06:09Z |
institution | BVB |
isbn | 9783527411245 9783527677689 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-027061137 |
oclc_num | 864668424 |
open_access_boolean | |
owner | DE-11 DE-19 DE-BY-UBM DE-188 DE-83 DE-703 DE-634 DE-20 DE-29T DE-91G DE-BY-TUM |
owner_facet | DE-11 DE-19 DE-BY-UBM DE-188 DE-83 DE-703 DE-634 DE-20 DE-29T DE-91G DE-BY-TUM |
physical | XVI, 607 S. Ill., graph. Darst. |
publishDate | 2014 |
publishDateSearch | 2014 |
publishDateSort | 2014 |
publisher | Wiley-VCH |
record_format | marc |
spelling | Attosecond and XUV physics ultrafast dynamics and spectroscopy ed. by Thomas Schultz ... Weinheim Wiley-VCH 2014 XVI, 607 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Literaturangaben Kurzzeitphysik (DE-588)4033856-3 gnd rswk-swf Freie-Elektronen-Laser (DE-588)4207744-8 gnd rswk-swf Attosekundenbereich (DE-588)4842731-7 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content (DE-588)4113937-9 Hochschulschrift gnd-content Freie-Elektronen-Laser (DE-588)4207744-8 s Kurzzeitphysik (DE-588)4033856-3 s Attosekundenbereich (DE-588)4842731-7 s DE-604 Schultz, Thomas ca. 1972 - (DE-588)1048170705 edt Erscheint auch als Online-Ausgabe, EPUB 978-3-527-67765-8 Erscheint auch als Online-Ausgabe, MOBI 978-3-527-67766-5 Erscheint auch als Online-Ausgabe, PDF 978-3-527-67767-2 X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=4329628&prov=M&dok_var=1&dok_ext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027061137&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Attosecond and XUV physics ultrafast dynamics and spectroscopy Kurzzeitphysik (DE-588)4033856-3 gnd Freie-Elektronen-Laser (DE-588)4207744-8 gnd Attosekundenbereich (DE-588)4842731-7 gnd |
subject_GND | (DE-588)4033856-3 (DE-588)4207744-8 (DE-588)4842731-7 (DE-588)4143413-4 (DE-588)4113937-9 |
title | Attosecond and XUV physics ultrafast dynamics and spectroscopy |
title_auth | Attosecond and XUV physics ultrafast dynamics and spectroscopy |
title_exact_search | Attosecond and XUV physics ultrafast dynamics and spectroscopy |
title_full | Attosecond and XUV physics ultrafast dynamics and spectroscopy ed. by Thomas Schultz ... |
title_fullStr | Attosecond and XUV physics ultrafast dynamics and spectroscopy ed. by Thomas Schultz ... |
title_full_unstemmed | Attosecond and XUV physics ultrafast dynamics and spectroscopy ed. by Thomas Schultz ... |
title_short | Attosecond and XUV physics |
title_sort | attosecond and xuv physics ultrafast dynamics and spectroscopy |
title_sub | ultrafast dynamics and spectroscopy |
topic | Kurzzeitphysik (DE-588)4033856-3 gnd Freie-Elektronen-Laser (DE-588)4207744-8 gnd Attosekundenbereich (DE-588)4842731-7 gnd |
topic_facet | Kurzzeitphysik Freie-Elektronen-Laser Attosekundenbereich Aufsatzsammlung Hochschulschrift |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=4329628&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027061137&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT schultzthomas attosecondandxuvphysicsultrafastdynamicsandspectroscopy |