Материал: Weber H., Herziger G., Poprawe R. (eds.) Laser Fundamentals. Part 1 (Springer 2005)(263s) PEo

Внимание! Если размещение файла нарушает Ваши авторские права, то обязательно сообщите нам

250

Index

Continuous wave

optical parametric oscillation 176

Continuum generation

picosecond

186

in crystals

186

Contribution

electrostrictive 227

Conversion

beam 65

e ciency

quantum

153

factor for SI and CGS-esu systems 150

frequency

e ciency

151

in gases

209

Correction

achromatic

97

Coupling

laser fiber

129

Stokes–anti-Stokes

222

waveguide

127, 128

Cross section

18

di erential

217

Raman scattering

223

scattering

217

di erential

227

Raman

223

Cross-spectral density

53

Cryogenic radiometer

47, 50

Crystal

biaxial

105, 145

data of

108

isotropic

105

laser

237

liquid

237

negative uniaxial

105

optical

105

optics

104

photonic, data of

108

photorefractive

237

picosecond continuum generation in 186

positive uniaxial

105

uniaxial

145

negative

146

positive

146

Cs

210

CS2

238

CsB3O5 142

CsD2AsO4 142

CsH2AsO4 142

CsLiB6O10 142

CuAlS2

227

Cubic 105

Current density

5

Curvature

phase, generalized

59

Cyclohexane

224, 229

Cyclohexanone

224

Cylindrical

vector wave

78

wave

79

D2, Q(2) 227

DAN 142, 157

Data

of crystals

108

of gases

108

of infrared materials

108

of liquids

108

of metals

108

of negative-refractive-index materials

108

of optical glass

108

of photonic crystals 108

of polymeric materials

108

of semiconductors

108

of solid state laser materials

108

DCDA

142, 156, 161

Decay

time T1

15

time T2

16

Degenerate four-wave mixing

235, 236

Degree

of polarization

77

Delta formulation, Miller

147

Density

cross-spectral

53

current

5

distribution

power

55

power, far-field

55

inversion

12, 13, 17

matrix

206

of electric charges

5

Dephasing

227

Depth

penetration

102

Detector

pyroelectric

49

quantum

49

thermal

48

Determination

of the ten second-order moments 66

Deuterium

226

DFWM (Degenerate Four-Wave Mixing)

236

Diameter

beam, generalized

57

Diamond

225

Dichloromethane

224

Dielectric medium

96

Dielectrics

homogeneous

6

isotropic

6

linear

6

Landolt-B¨ornstein

New Series VIII/1A1

Index

251

Di erence frequency generation

144, 153, 172

generation of IR radiation by

172

in the far IR region 175

Di erential

cross section

217

scattering

cross section

227

Di raction

84

e ciency

92

figure

Fresnel’s

93

-free

beam

79

Bessel beam

79

length

151

pattern

Fraunhofer

89

scalar theory of

85

theory

Rayleigh–Sommerfeld–Debye

89

time-dependent

89

vector theory of

85

Di ractive optics

94

Di use emitter

47

Dimethylhexadiene

224

Dimethylsulfoxide (DMSO)

224

Dipole

approximation

12

Hertz’s

8

moment

11, 15

oscillating

8

Disc

Airy’s

92

Dispersion

formula

97

-spreading length

151

Displacement

electric

5

Distance

Rayleigh

82

Distribution

power density

55

far-field

55

Wigner

53

Divergence angle

82

DKB5

143, 165

DKDA

143, 165

DKDP

143, 156, 159, 160, 162

DMSO (dimethylsulfoxide)

224

Doped media

propagation in

10

Doppler broadening

28

Doublet

Brillouin

218

Dye laser radiation

second harmonic generation of

164

E ective

beam propagation ratio

60

length

151

nonlinear coe cient

150

nonlinearity

147

E ciency

conversion

quantum

153

di raction

92

frequency-conversion

151

Einstein coe cient

of induced emission

21

of spontaneous emission

21

Electric

charges, density of

5

conductivity

6

displacement

5

field

5

polarization

6

susceptibility

6

Electromagnetic field

5

Electrostrictive contribution

227

Ellipse

variance

57

Ellipsoid

index

105

Ellipsometry

104

Elliptical Gaussian beam 57

Emission

anti-Stokes, higher-order

222

induced

Einstein coe cient

21

spontaneous

4, 15, 28

Einstein coe cient

21

Stokes, higher-order

222

Emitter

di use

47

Energy

flux

7

radiant

45, 46

relaxation

15

Entropy relaxation 16

Equation

adiabatic

20

fundamental

of nonlinear optics

207

Helmholtz

74, 79

Maxwell’s

5

Maxwell–Bloch

15, 16

rate

20

slowly varying envelope (SVE)

74, 80

SVE (slowly varying envelope)

74, 80

wave

73, 78

Ethanol

224, 226, 229, 230

Ethyl-Benzene

224

Ethylene

225

Landolt-B¨ornstein

New Series VIII/1A1

252

Index

Eu 210

Excitance radiant 46

Excited-state absorption 237 External reflection 101 Extraordinary beam 145

Factor conversion

for SI and CGS-esu systems 150

gain

220, 226, 227

slit

92

Far field

58

approximation

Fraunhofer

87

fidelity

239

Fraunhofer approximation

87

power density distribution

55

Far IR region

di erence frequency generation in 175

Faraday rotator

76

Feed-back amplifier 3

Femtosecond optical parametric oscillation 184

Ferroelectric oxide

242

Feynman representation

32

Fiber

laser coupling

129

phase conjugator

240

Fidelity

240

conjugation

238

far-field

239

Field

electric

5

electromagnetic

5

far

58

magnetic

5

near

56

Fifth harmonic generation

153, 156

of Nd:YAG laser radiation 161

Fluctuation matrix

beam

67

Fluorinert

FC 72

229

FC 75

229

Fluorobenzene

224

Fluoromethane

224

Formula

dispersion

97

Fresnel’s

98, 99

Sellmeier’s

97

Four-level system

24

Four-wave

interaction

221

mixing, degenerate 235, 236

Fourier

optics

94

transform

88

Fourth harmonic generation

153, 156

of Nd:YAG laser radiation

160

of Ti:sapphire laser radiation 164

Fraunhofer

approximation

88

far-field

87

di raction pattern

89

far-field approximation

87

Free-space propagation

61

Freon

238

Frequency

conversion

e ciency

151

gases

205

in gases

209

liquids

205

mixing

208

Rabi

33

spatial

88

Fresnel

approximation

85, 86

di raction figure

93

formulae

98, 99

–Kirchho approximation

86

number

88

Fundamental equations

of nonlinear optics

207

GaAs

175, 186, 242

Gain

coe cient

18, 229

Brillouin

238

factor

220, 226, 227

small-signal

11

Gallium Selenide

142

GaP

175, 227

Gas

205

absorbing

237

data of

108

-eous media, mixture of

209, 211

frequency conversion in

205, 209

laser radiation

second harmonic generation of 166

mixture, metal-vapor inert

209, 210

Raman

parameters

227

scattering

225

scattering

Raman

225

GaSe

142, 167, 174, 186

Gauss

–Hermite beam

81

–Laguerre beam

83

–Schell model

53

beam

53

Gaussian

apodization

114

Landolt-B¨ornstein

New Series VIII/1A1

Index

253

beam 53, 81 elliptical 57 propagation 111

imaging 108 line shape 27 matrix 111

Gd2(MoO4)3 225

GeCl4 238

General

astigmatic

beam

64, 121, 123

system

116

parabolic

system

112

ray-transfer matrix

117

Generalized

beam diameter

57

phase curvature

59

Generation

continuum

picosecond 186

picosecond, in crystals

186

di erence-frequency

144, 153, 172

generation of IR radiation by

172

in the far IR region

175

fifth harmonic

153, 156

of Nd:YAG laser radiation

161

fourth harmonic

153, 156

of Nd:YAG laser radiation

160

of Ti:sapphire laser radiation

164

harmonic

156

of CO2 laser radiation

166

of harmonics

of high-power Nd:glass laser radiation

162

of iodine laser radiation 162

of Nd:YAG laser radiation

161

second harmonic

144, 152, 156

in “nonlinear regime”

154

of dye laser radiation

164

of gas laser radiation

166

of Nd:YAG laser radiation

156, 157, 159

of Nd:YAG laser radiation, intracavity

158

of ruby laser radiation

163

of semiconductor laser radiation 164

of Ti:sapphire laser radiation

163

sixth harmonic

156

of Nd:YAG laser radiation

161

sum-frequency

144, 153, 167

of UV radiation 167–169

third harmonic

152, 156, 208

of Nd:YAG laser radiation

159

of Ti:sapphire laser radiation

163

Geometric optical radiance

54

Geometrical optics

108

Glass

BSC-2 229

Landolt-B¨ornstein

New Series VIII/1A1

DF-3

229

optical

97

data of

108

Glycerol

229

Goos–H¨anchen shift

103

Gradient-index lens

113

Grating

92

concave

Rowland

114

thermal

237

Group

point

150

H2, Q(1) 227

Half-wave plate

76

Harmonic generation

156

of CO2 laser radiation

166

of high-power Nd:glass laser radiation

162

of iodine laser radiation

162

of Nd:YAG laser radiation

161

Harmonics

of high-power Nd:glass laser radiation

162

of iodine laser radiation

162

of Nd:YAG laser radiation

161

He

211

He-Ne laser

166

Heat pipe

209

Helmholtz equation

74, 79

Hermite–Gaussian beam

53

higher-order

123

Hertz’s dipole

8

Hexagonal

105

Hg

210, 211

HgGa2S4

143, 171

Higher order

anti-Stokes emission

222

Hermite–Gaussian beam

123

Stokes emission

222

Hole-burning

spatial

237

Holography

237

Homogeneous

6

broadening

29, 223

dielectrics

6

system

16

Huygens’ principle

8, 85

Hydrogen

226

Hydrogenbromide

226

Hydrogenchloride

226

Hyperbolic

propagation law

60

Imaging

Gaussian

108

Index

ellipsoid

105

surface

105, 146

254

Index

Indicatrix optical 145

Induced emission Einstein coe cient 21

Induction magnetic 5

Infrared material, data of 108

Inhomogeneous

broadening

30, 223

system

16

Inner astigmatism

64

InP

242

Input

noise 220

InSb

229

Integral

Collins

126

Intensity

8

radiant

46

saturation

18

Interaction

14

coherent

31

four-wave 221

Hamiltonian

14

length

nonlinear

152

quasistatic

151

nonlinear

length

152

quasistatic

length

151

three-wave

144

Internal reflection

101

Intracavity second harmonic generation of Nd:YAG

laser radiation

158

Intrinsic astigmatism 60, 65

Inversion density

12, 13, 17

Iodine laser radiation

harmonics of

162

IR

far

region, di erence frequency generation in

175

material, data of

108

mid

region, optical parametric oscillation in

186

near

region, cw optical parametric oscillation in

176

region, femtosecond optical parametric

oscillation in

184

region, nanosecond optical parametric

oscillation in

176

region, picosecond optical parametric oscillation in 180

radiation

generation by di erence frequency generation

172

Irradiance

46

Isopropanol

224, 226

Isotropic

7

crystal

105

dielectrics

6

Jones

calculus

75

matrix

75

vector

75

K210

KB5O8

4D2O

143

KB5O8

4H2O

143

KB5

143, 161, 162, 165, 166, 169

KD2AsO4 143

KD2PO4 143

KDP

143, 156, 159–164, 166, 167, 176, 180, 186

KH2PO4 143

Kleinman symmetry conditions 150

KNbO3

143, 157, 158, 163–165, 179, 185, 242

Kr 211

Kramers–Kronig relation

97

KTA

143, 173, 179, 183, 185

KTiOAsO4

143

KTiOPO4

143

KTP

143, 156–159, 170, 173, 178, 179, 182–185

Laguerre

–Gaussian beam 53

polynomial 83

Lamb dip

26

Lambert’s cosine law

47

Lambertian radiator

47

Laser

argon

166

CO

166

crystal

237

energy meter

50

fiber coupling

129

He-Ne

166

NH3

166

oscillator

3

theory, semiclassical

4

Law

Planck’s

21

propagation, hyperbolic

60

LBO

143, 157–159, 161, 163, 169, 177, 178, 181,

182, 184

Length

aperture

151

coherence

238

di raction

151

dispersion-spreading

151

e ective

151

Landolt-B¨ornstein

New Series VIII/1A1

Источник: https://files.student-it.ru/previewfile/280942