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Index
255
interaction
nonlinear
152
quasistatic
151
nonlinear interaction
quasistatic interaction
Rayleigh
61
Lens
aberration
117
gradient-index
113
shape factor of
thermal
thick
110
in air
thin
LFM
143, 156, 165
Li2B4O7
160, 161
LiB3O5 143
LiCOOH H2O
143
Lifetime
upper-level, T1
18
Light
-induced refractive-index change 242
partially polarized
77
pressure
50
LiHCOO
225
LiIO3
143, 156, 158, 159, 161, 163, 165, 166, 170,
172, 175, 176, 180, 186
LiNbO3
143, 156, 158, 159, 161, 166, 170, 172, 175,
176, 180, 186, 237, 242
LiNbO3:MgO
143, 159, 176, 180
Line
anti-Stokes
218
broadening
26, 28
Raman
vibration-rotation
vibrational
218, 223
scattering
Rayleigh, stimulated
228
shape
26
Gaussian
27
Lorentzian
normalization of 27
normalized
spectral
17
Stokes
width
Linear
7
dielectrics
6
optics
73
susceptibility
205
Linewidth
226, 227
Liquid
absorbing
237
crystal
data of
108
frequency conversion in
Landolt-B¨ornstein
New Series VIII/1A1
parameters
226
224
Listing’s construction
Lithium Fomate
Lithium Iodate
Lithium Niobate
Lithium Triborate
Long-term beam width 69
Lorentzian line shape
m-Dinitrobenzene
231
m-Nitrotoluene
229, 231
m-Xylene
Magnetic
field
5
induction
polarization
Maiman
3
MAP
142, 157
Master oscillator power amplifier
240
Matching
mode
128
phase
144
condition
208
noncollinear
146
Material
infrared, data of
negative-refractive-index, data of
optical
95
photorefractive
242
polymeric, data of
solid-state-laser, data of 108
Matrix
ABCD
111
density
206
fluctuation
beam
67
Jones
75
ray-transfer
general
system
55
variance 56
Maxwell
–Bloch equations
15, 16
equations
Medium
dielectric
96
Meissner
Mercury Thiogallate
meta-Nitroaniline
Metal
256
optics of
98
vapor
inert gas mixture
209, 210
mixture of di erent
Methane
Methane, Q
227
Methanol
224, 226, 229, 230, 238
Methanol-d4 224
Methyl N-(2,4-Dinitrophenyl)-L-Alaninate
142
Methylodide
229
Mg 210
Mg+
210
Mg:O-doped Lithium Niobate 143
MHBA
Mid IR region
optical parametric oscillation in
186
Miller
coe cient
147
delta formulation
Mirror
concave
spherical
114
phase-conjugate
235
self-adapted
238
Misalignment 116
Mixed moment
56
Mixing
frequency
two-wave
Mixture
metal-vapor inert gas
of di erent metal vapors 209, 210
of gaseous media
209, 211
mNA
143, 157
Mode
competition
hopping
matching
Model
Gauss–Schell
53
Moment
angular
centered
dipole
11, 15
mixed
second-order
determination of
66
radiation field, propagation of
spatial
Momentum
conservation of 208
Monoclinic
105
MOPA (Master Oscillator Power Amplifier)
Mueller calculus
Multimode oscillation 26
Mutual power spectrum
nπ-pulse 35
N2
211, 238
N2O
N-(4-Nitrophenyl)-(L)-Propinol 142
N-[2-(Dimethylamino)-5-Nitrophenyl]-Acetamide
n-Hexane
n-Nitrotoluene
Na
NaClO3
Nanosecond optical parametric oscillation 176
Naphthalene
225, 231
Nd:glass high-power laser radiation
generation of harmonics
162
harmonics
Nd:YAG laser radiation
fifth harmonic generation of
161
fourth harmonic generation of
160
harmonics of
intracavity second harmonic generation of
158
second harmonic generation of
156, 157, 159
second harmonic generation, intracavity, of
sixth harmonic generation of
third harmonic generation of
159
Ne
211
Near field
Near IR
radiation
up-conversion of
170
region
cw optical parametric oscillation in 176
femtosecond optical parametric oscillation in
184
nanosecond optical parametric oscillation in
176
picosecond optical parametric oscillation in
180
Negative
refractive index material, data of 108
uniaxial crystal 105, 146
(NH2)2CO 143
NH3 laser
166
NH4H2AsO4 143
NH4H2PO4 143
Nitroacetophenone
Nitrobenzaldehyde
Nitrobenzene
225, 226, 229, 231
Nitrogen
225, 226
NO
NO2C6H4NH2 143
Nodal point
Noise input
220
Non-symmetrical optical system
112
Noncollinear phase matching 146
257
Nonlinear coe cient
e ective 150 interaction length 152 optics
fundamental equations of 207 regime
second harmonic generation in 154
third-order
206, 221
Nonlinearity
e ective
Normalization
of line shapes
Normalized
line shape
shape function 27
Notation
complex
NPP 142, 179, 185
Number
Abbe’s
97
Fresnel
88
o-Nitroaniline
o-Nitrophenol
o-Nitrotoluene
o-Xylene
Octanol
Optical
glass
indicatrix
145
material
parametric oscillation
144, 153, 176
continuous wave
femtosecond
in the mid IR region
nanosecond
picosecond
radiometry
45
self-focusing
non-symmetrical
symplectic
116
Optics
104
di ractive
94
Fourier
geometrical
linear
nonlinear, fundamental equations of 207
of metals
of semiconductors
Ordinary beam
Orthorhombic
Oscillating dipole 8
Oscillation
multimode
optical parametric
Oscillator
self-sustained
Oxide
ferroelectric 242
Oxygen
p-Dichlorobenzene
p-Nitroanisol
p-Nitrotoluene
p-Xylene
225, 229
Parabolic system, general
Paraboloid
59
Paraxial range
Partially
coherent beam
54
polarized light
PCM (Phase-Conjugate Mirror) 235
Penetration depth
102
Permeability
Permittivity
Perturbation approach
Phase
-conjugate mirror
conjugation
self-pumped
conjugator
fiber
235, 243
vector
236
curvature, generalized
paraboloid
Phonons
acoustic
217
Photoacoustic calorimetry
Photoconductor
49
Photodiode
Photometric quantities
Photonic crystals, data of
Photorefraction
Photorefractive
phase conjugator
258
Picosecond
continuum generation
in crystals
optical parametric oscillation 180
Pipe
heat
209
Piperidine
Planar plate
Planck’s law
21
Planckian radiation
47
Plane
cardinal
wave
7, 79
approximation
representation
87
Plate
Brewster-angle-tilted 76
half-wave
76
planar
quarter-wave
Point
group
150
nodal
Polarization
12, 17, 75
degree of
electric
magnetic
Polarized
partially
light
Polydiacetylene
Polymeric materials, data of
Polynomial
Laguerre
83
POM
Position
waist
60
Positional stability
Positive uniaxial crystal
105, 146
Potassium Dideuterium Arsenate
Potassium Dideuterium Phosphate
Potassium Dihydrogen Phosphate
Potassium Niobate
Potassium Pentaborate Tetradeuterate
Potassium Pentaborate Tetrahydrate
Potassium Titanyl Arsenate
Potassium Titanyl Phosphate
Power
density distribution
radiant
46
spectrum
mutual
Poynting vector
Pressure
28
Primary standards
Principal
axis
58
of the beam
57
value
Principle
Huygens’
8, 85
Process
pumping
16
Prokhorov 3
Propagation
120
free-space
in doped media
10
law
hyperbolic
of the second-order moments of the radiation
short-pulse
three-dimensional
127
two-dimensional 126
Proustite
Pseudo-symmetric beam
64
Pulse
2π-
35
amplification, adiabatic
25
nπ-
π-
36
resonant coherent
34
short, propagation of
Pumping
process
schemes
22
Pyrargyrite 142
Pyridine
Pyroelectric detector
q-parameter, complex
Quantities
photometric
radiometric
Quantum
conversion e ciency 153 detector 49
Quarter-wave plate 76 Quartz 175, 227, 229, 238
Quasistatic interaction length 151
Rabi frequency 33 Radiance 46
geometric-optical 54 spectral 45
259
Radiant
energy
45, 46
excitance
intensity
power
Radiation
propagation of the second-order moments 111
Planckian
synchrotron
Radiator
black-body
lambertian
Radiometer
cryogenic
47, 50
Radiometric
quantities
standards
Radiometry
line
gases
liquids
solids
cross section
223
stimulated
217, 223, 226
Range
paraxial
Seidel’s
109
Rate equations
20
Ray
surface
tracing
transfer matrix 111
distance
82
length
line scattering
line, stimulated
217, 228, 230
stimulated, thermal 220, 228
wing
wing, stimulated
228, 230, 231
–Sommerfeld
86
–Debye di raction theory
89
wing scattering
wing scattering, stimulated
Rb 210
RbH2AsO4 143
RbH2PO4 143
RbTiOAsO4
RDA
143, 156, 159, 163
RDP
143, 156, 159, 163, 164
Real Bessel beam
80
Rectangular aperture
Reflection
external
101
internal
total
Refraction
at a sphere
Refractive index
change, light-induced
8, 103
Region
X-ray 47
Relation
Kramers–Kronig
Relaxation
15
entropy
Replica
time-reversed 236
Representation
angular-spectrum
plane-wave
Resonance condition
Resonant coherent pulses
Responsivity
48
Rotating wave approximation
14
Rotator
Faraday
Rowland concave grating
RTA
143, 179, 185
Rubidium Dihydrogen Arsenate
Rubidium Dihydrogen Phosphate
Rubidium Titanyl Arsenate
Ruby laser radiation
163
Saturable absorber
Saturation
29
of the two-level transition
SBS (stimulated Brillouin scattering) 227, 236 threshold 238, 239
Scalar di raction theory 85