Fundamentals of nonlinear optics of atomic gases:
Gespeichert in:
Hauptverfasser: | , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
New York [u.a.]
Wiley
1988
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | EST: Osnovy nelineinoi optiki atomarnykh gazov <dt.>. - Aus d. Russ. übers. |
Beschreibung: | XIV, 221 S. |
ISBN: | 0471893919 |
Internformat
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245 | 1 | 0 | |a Fundamentals of nonlinear optics of atomic gases |c Nikolaĭ B. Delone and Vladimir P. Kraĭnov |
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Datensatz im Suchindex
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adam_text | Contents
NOTATION AND SYMBOLS xiii
INTRODUCTION
1
1. LINEAR
OPTICS OF ATOMIC
GASES 7
1.1. The Nonresonance Linear
Atomic
Susceptibility
8
1.1.1.
Introduction
8
1.1.2.
The Diagrammatic Technique for Linear Atomic
Susceptibility
10
1.1.3.
Properties of Linear Atomic Susceptibility
11
1.1.4.
The Quadratic AC Stark Effect in a Monochromatic
Field
12
1.1.5.
Linear Scattering of Light
13
1.1.6.
Calculation of the Linear Atomic Susceptibility
15
1.1.7.
Conclusion
17
1.2.
The Resonance Linear Atomic Susceptibility
17
1.2.1.
Introduction
17
1.2.2.
The Frequency Dependence of
χ(1)(«;
«)
in the
Vicinity of Resonances
18
1.2.3.
One-Photon Ionization of an Atom
19
1.2.4.
Phenomena that Determine the Resonance Width
20
1.2.4.1.
Natural broadening
20
1.2.4.2.
Doppler
broadening
21
1.2.4.3.
Ionization broadening
21
1.2.4.4.
Quadratic AC stark broadening in a pulsed
field
22
1.2.4.5.
The linear stark effect and linear stark
broadening in a strong electromagnetic field
22
1.2.4.6.
Collision {impact) broadening
22
1.2.4.7.
The nonmonochromaticity of laser radiation
23
viii CONTENTS
1.2.5.
Resonance Spontaneous Raman Scattering and Hot
Luminescence
23
1.2.6.
Conclusion
24
13.
Transmission and Reflection of Light at Normal Incidence
to
аг
Interface
25
1.3.1.
Introduction
25
1.3.2.
Maxwell s Equation in the Unperturbed-Field
Approximation
26
1.3.3.
The Wave of Linear Polarization of a Medium
27
1.3.4.
The Dielectric Constant of a Linear Medium
29
1.3.5.
Linear Reflection of Light from a Medium
30
1.3.6.
Conclusion
33
1.4.
Linear Absorption of Light
33
1.4.1.
Introduction
33
1.4.2.
The Absorption Coefficient
34
1.4.3.
Conclusion
35
1.5.
Refraction of an Electromagnetic Wave Falling at an Angle
on the Interface between Two Media
35
1.5.1.
Introduction
35
1.5.2.
Maxwell s Equation in the Unperturbed-Field
Approximation
36
1.5.3.
The Turning of the Wave Vector in a Medium
37
1.5.4.
The Falling of a Spatially Inhomogeneous Light
Beam on a Linear Medium
39
1.5.5.
Conclusion
41
1.6.
Polarization of an Electromagnetic Field in a Linear
Medium
41
1.6.1.
Introduction
41
1.6.2.
Parameters Characterizing an Elliptically Polarized
Electromagnetic Wave
42
1.6.3.
Propagation of an Elliptically Polarized Wave in a
Linear Medium
44
1.6.4.
Conclusion
45
1.7.
Conclusion
45
2.
NONLINEAR INTERACTION OF LIGHT AND ATOMS
47
2.1.
Nonlinear Atomic Susceptibilities
49
2.1.1.
Introduction
49
2.1.2.
The Diagrammatic Technique for Nonlinear
Atomic Susceptibility
53
CONTENTS ix
2.1.3.
Examples of Cubic Susceptibilities
55
2.1.4.
Higher-Order Nonlinear Susceptibilities
59
2.1.5.
Removal of Secular Terms in Nonresonance
Nonlinear Susceptibilities
60
2.1.6.
Calculations of Nonresonance Nonlinear
Susceptibilities
61
2.1.7.
Conclusion
64
2.2.
Resonance Nonlinear Atomic Susceptibilities
65
2.2.1.
Introduction
65
2.2.2.
The Effect of Level Population on Nonlinear
Susceptibility
67
2.2.3.
The Physical Meaning of the Real and Imaginary
Parts of Nonlinear Susceptibilities
69
2.2.4.
Conclusion
72
23.
Hyperpolarizability of Atomic Levels
72
2.4.
Multiphoton Excitation and Nonlinear Ionization of Atoms
74
2.4.1.
Introduction
74
2.4.2.
Conditions Necessary for Multiphoton Ionization
74
2.4.3.
Multiphoton Ionization of Atoms
75
2.4.4.
Direct Multiphoton Ionization of Atoms
79
2.4.5.
Probability of Multiphoton Excitation
81
2.5.
Conclusion
82
3.
NONLJNEAR-OPTICS PHENOMENA IN ATOMIC GASES
84
3.1.
The Basics of the Theory of the Interaction of Intense
Light with an Atomic Gas
85
3.1.1.
Introduction
85
3.1.2.
Simplifying Assumptions and Approximations
85
3.1.2.1.
The monochromaticity of light waves
85
3.1.2.2.
The plane incident
wavefront
86
3.1.2.3.
Uniform distribution of field strength over
the incident wavefront
86
3.1.2.4.
The stationary action of the light radiation
86
3.1.2.5.
Polarization of the radiation
87
3.1.2.6.
The unperturbed-field approximation
87
3.1.2.7.
The absence of an interaction between the
atoms
87
3.1.2.8.
The immobility of the atoms
88
3.1.3.
The Maxwell Equations in a Nonlinear Medium
88
CONTENTS
3.1.4.
The Phase-Matching Condition
91
3.1.5.
Conclusion
93
3.2.
Higher Optical Harmonics
94
3.2.1.
Introduction
94
3.2.2.
Classification of the Basic Processes
95
3.2.3.
The Second Harmonic of the Incident Radiation
96
3.2.4.
The Third Harmonic
98
3.2.5.
Phase Matching in a Gas
100
3.2.6.
Limiting and Competing Effects
104
3.2.6.1.
One-photon absorption
105
3.2.6.2.
Two-photon absorption
106
3.2.6.3.
Multiphoton ionization of atoms
109
3.2.6
A. Nonlinear variation of the refractive index
112
3.2.6.5.
Optical breakdown of the gas mixture by
laser radiation
113
3.2.7.
Excitation of the Second Harmonic in Gases in the
Presence of a Constant Electric Field
114
3.2.8.
Excitation of the Second Harmonic in Gases in the
Presence of a Constant Magnetic Field
115
3.2.9.
Excitation of Higher Harmonics in Gases
117
3.2.10.
The Practical Realization of Higher-Harmonic
Excitation in Gases
118
3.2.11.
Excitation of Harmonics in Other Media
119
3.2.12.
Conclusion
120
33.
Stimulated Raman Scattering
121
3.3.1.
Introduction
121
3.3.2.
Spontaneous Raman Scattering in an Atomic
Medium
122
3.3.3.
Stimulated Photon Emission
124
3.3.4.
Properties of Stimulated Raman Scattering
126
3.3.5.
Raman Frequencies in Stimulated Raman
Scattering
128
3.3.6.
Linear Law of Excitation for Stimulated Raman
Scattering
132
3.3.7.
Exponential Law of Excitation for Stimulated
Raman Scattering
135
3.3.8.
Saturation of Stimulated Raman Scattering
137
3.3.9.
One-Photon Absorption as a Competing Process
139
3.3.10.
Excitation of Stimulated Raman Scattering by
Nonmonochromatic Radiation
141
3.3.11.
Stimulated Hyper-Raman Scattering
143
CONTENTS xi
3.3.12.
Stimulated Raman Scattering from Excited Atomic
States
146
3.3.13.
Stimulated Raman Scattering in Other Media
148
3.3.14.
Stimulated Raman Scattering in Nonlinear Optics
and Quantum Radiophysics
150
3.3.15.
Conclusion
152
3.4.
Coupled Waves
153
3.4.1.
Introduction
153
3.4.2.
Wave Coupling in a Medium with Quadratic
Nonlinearity
153
3.4.3.
Four-Wave Coupling
156
3.4.4.
Coherent Anti-Stokes Raman Scattering
157
3.4.5.
Coherent Two-Photon Radiation
159
3.4.6.
Excitation of the Wave with Sum Frequency
161
3.4.7.
The Manley-Rowe Law and the Phase-Matching
Conditions in Four-Wave Coupling
162
3.4.8.
Tensor Properties of the Cubic Susceptibility for
Four-Wave Coupling in Alkali-Atom Vapors
164
3.4.9.
Conclusion
165
3.5.
Nonlinear Refraction
166
3.5.1.
Introduction
166
3.5.2.
The Phenomenon of Nonlinear Refraction
167
3.5.3.
Propagation of a Light Ray in a Nonlinear Medium
171
3.5.4.
Stationary Self-Focusing of Light
172
3.5.5.
The Instability of Self-Focusing of Light
175
3.5.6.
The Elementary Processes That Lead to the
Dependence of the Index of Refraction on the
Field Strength in the Light Wave
178
3.5.7.
Nonlinear Refraction in the Nonstationary
Interaction of light with the Medium
181
3.5.8.
Self-Focusing of Laser Radiation in Other Media
183
3.5.9.
Conclusion
183
3.6.
Change of Polarization of an Intense light Wave
184
3.6.1.
Introduction
184
3.6.2.
An Equation for the Nonlinear Polarization Wave
186
3.6.3.
Self-Rotation of the Polarization Ellipse of an
Intense Light Wave in a Medium
188
3.6.4.
Induced Optical Anisotropy
190
3.6.5.
Induced Dichroism and Gyrotropy
192
3.6.6.
Induced Dichroism in Molecular Gases
195
xü CONTENTS
3.6.7.
Nonlinear Polarization Spectroscopy
195
3.6.8.
Conclusion
196
3.7.
Nonlinear Light Absorption
196
3.7.1.
Introduction
196
3.7.2.
The Two-Photon Absorption Probability
197
3.7.3.
Saturation of Nonlinear Absorption
199
3.7.4.
The Nonlinear Absorption Coefficient
199
3.7.5.
The Relationship between the Nonlinear
Absorption Coefficient and the Absorption Cross
Section
202
3.7.6.
Conclusion
203
3.8.
Conclusion
204
CONCLUSION
205
REFERENCES
208
AUTHOR INDEX
213
SUBJECT INDEX
217
|
any_adam_object | 1 |
author | Delone, Nikolaj B. 1926-2008 Krajnov, Vladimir P. |
author_GND | (DE-588)121178293 |
author_facet | Delone, Nikolaj B. 1926-2008 Krajnov, Vladimir P. |
author_role | aut aut |
author_sort | Delone, Nikolaj B. 1926-2008 |
author_variant | n b d nb nbd v p k vp vpk |
building | Verbundindex |
bvnumber | BV000814291 |
callnumber-first | Q - Science |
callnumber-label | QC446 |
callnumber-raw | QC446.2 |
callnumber-search | QC446.2 |
callnumber-sort | QC 3446.2 |
callnumber-subject | QC - Physics |
classification_rvk | UH 5690 |
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ctrlnum | (OCoLC)16004483 (DE-599)BVBBV000814291 |
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 12 |
dewey-tens | 530 - Physics |
discipline | Physik |
format | Book |
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id | DE-604.BV000814291 |
illustrated | Not Illustrated |
indexdate | 2024-07-09T15:19:53Z |
institution | BVB |
isbn | 0471893919 |
language | English |
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physical | XIV, 221 S. |
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publisher | Wiley |
record_format | marc |
spelling | Delone, Nikolaj B. 1926-2008 Verfasser (DE-588)121178293 aut Osnovy nelinejnoj optiki atomarnych gazov Fundamentals of nonlinear optics of atomic gases Nikolaĭ B. Delone and Vladimir P. Kraĭnov New York [u.a.] Wiley 1988 XIV, 221 S. txt rdacontent n rdamedia nc rdacarrier EST: Osnovy nelineinoi optiki atomarnykh gazov <dt.>. - Aus d. Russ. übers. Faisceaux laser Gaz ionisés - Propriétés optiques Optique non linéaire Otica, holografia, laser e cor larpcal Ionized gases Optical properties Laser beams Nonlinear optics Nichtlineare Optik (DE-588)4042096-6 gnd rswk-swf Gasphase (DE-588)4156038-3 gnd rswk-swf Gas (DE-588)4019320-2 gnd rswk-swf Licht (DE-588)4035596-2 gnd rswk-swf Atom (DE-588)4003412-4 gnd rswk-swf Nichtlineare Optik (DE-588)4042096-6 s Atom (DE-588)4003412-4 s Gasphase (DE-588)4156038-3 s DE-604 Gas (DE-588)4019320-2 s 1\p DE-604 Licht (DE-588)4035596-2 s 2\p DE-604 Krajnov, Vladimir P. Verfasser aut Digitalisierung UB Regensburg application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=000510739&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Delone, Nikolaj B. 1926-2008 Krajnov, Vladimir P. Fundamentals of nonlinear optics of atomic gases Faisceaux laser Gaz ionisés - Propriétés optiques Optique non linéaire Otica, holografia, laser e cor larpcal Ionized gases Optical properties Laser beams Nonlinear optics Nichtlineare Optik (DE-588)4042096-6 gnd Gasphase (DE-588)4156038-3 gnd Gas (DE-588)4019320-2 gnd Licht (DE-588)4035596-2 gnd Atom (DE-588)4003412-4 gnd |
subject_GND | (DE-588)4042096-6 (DE-588)4156038-3 (DE-588)4019320-2 (DE-588)4035596-2 (DE-588)4003412-4 |
title | Fundamentals of nonlinear optics of atomic gases |
title_alt | Osnovy nelinejnoj optiki atomarnych gazov |
title_auth | Fundamentals of nonlinear optics of atomic gases |
title_exact_search | Fundamentals of nonlinear optics of atomic gases |
title_full | Fundamentals of nonlinear optics of atomic gases Nikolaĭ B. Delone and Vladimir P. Kraĭnov |
title_fullStr | Fundamentals of nonlinear optics of atomic gases Nikolaĭ B. Delone and Vladimir P. Kraĭnov |
title_full_unstemmed | Fundamentals of nonlinear optics of atomic gases Nikolaĭ B. Delone and Vladimir P. Kraĭnov |
title_short | Fundamentals of nonlinear optics of atomic gases |
title_sort | fundamentals of nonlinear optics of atomic gases |
topic | Faisceaux laser Gaz ionisés - Propriétés optiques Optique non linéaire Otica, holografia, laser e cor larpcal Ionized gases Optical properties Laser beams Nonlinear optics Nichtlineare Optik (DE-588)4042096-6 gnd Gasphase (DE-588)4156038-3 gnd Gas (DE-588)4019320-2 gnd Licht (DE-588)4035596-2 gnd Atom (DE-588)4003412-4 gnd |
topic_facet | Faisceaux laser Gaz ionisés - Propriétés optiques Optique non linéaire Otica, holografia, laser e cor Ionized gases Optical properties Laser beams Nonlinear optics Nichtlineare Optik Gasphase Gas Licht Atom |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=000510739&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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