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

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260

Index

Scattering

anti-Stokes

222

anti-Stokes Raman, coherent 222

Brillouin

stimulated

217, 227, 229, 236

stimulated, thermal

220, 227

coe cient 226

coherent

anti-Stokes Raman

222

cross section

217

di erential

227

Raman

223

Raman

cross section

223

gases

225

liquids

224

solids

225

stimulated

217, 223, 226

Rayleigh

line 217

line, stimulated

228

stimulated

217, 228, 230

stimulated, thermal

220, 228

wing

217

wing, stimulated

228, 230, 231

spontaneous

Stokes

219

stimulated

205, 217

Brillouin

217, 227, 229

Brillouin, thermal

220, 227

Raman

217, 223, 226

Rayleigh

217, 228, 230

Rayleigh, line

228

Rayleigh, thermal

220, 228

Rayleigh, wing

228, 230, 231

Stokes

219

transient

222

Stokes

spontaneous

219

stimulated

219

Schawlow

3

Schr¨odinger equation

13

of optics

9

Second harmonic generation

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

Second-order moment 55 determination of 66 radiation field

propagation of 111

Secondary standards

48

Seebeck coe cient

48

Seidel’s range

109

Self-adapted mirror

238

Self-focusing

optical

220

Self-pumped

phase conjugation

237

phase conjugator

235, 243

Self-sustained oscillator

3

Sellmeier’s formula

97

Semiclassical laser theory

4

Semiconductor

data of

108

laser radiation

second harmonic generation of 164

optics of

98

SF6

226, 238

Shape

factor of a lens

117

function, normalized 27

line

26

Shift

Goos–H¨anchen

103

Stokes

224–227

Short-pulse propagation

97

Siliciumtetrachloride

225

Sillenites

242

Silver Gallium Selenide

142

Silver Thiogallate

142

Simple astigmatic beam

63, 120, 121

Sixth harmonic generation 156

of Nd:YAG laser radiation

161

Slit factor

92

Slowly varying envelope (SVE)

9

approximation 9

for di raction

9

equation

74, 80

Small signal

gain factor

11

solutions

19

Solid

Raman

parameters

227

scattering

225

scattering

Raman

225

-state laser material, data of

108

Solutions

small-signal

19

steady-state

17

strong-signal

19

Spatial

frequency 88

hole-burning

237

moment

56

Landolt-B¨ornstein

New Series VIII/1A1

Index

261

Spectral

line shape

17

radiance

45

Spectrum

angular, representation 87

Sphere

refraction at

114

Spherical

aberration

117

third-order

119

concave mirror

114

mirror

113

surface

113

vector wave

78

wave

8, 79

Spontaneous

emission

4, 15, 28

Einstein coe cient

21

scattering

Stokes

219

Stokes scattering

219

Sr 210

SRLS (stimulated Rayleigh line scattering)

228

SRS (stimulated Raman scattering) 223

SRWS (stimulated Rayleigh wing scattering)

228,

230, 231

Stability

positional

beam

67

Standards

primary

47

radiometric

47

secondary

48

STBS (stimulated thermal Brillouin scattering)

227

Steady state

condition

5

solutions

17

Steradian

47

Stigmatic beam

62, 120, 121

Stimulated

amplification

221

Brillouin scattering

217, 227, 229, 236

thermal

220, 227

Raman scattering 217, 223, 226

Rayleigh scattering

217, 228, 230

line

228

thermal

220, 228

wing

228, 230, 231

scattering

205, 217

Brillouin

217, 227, 229

Brillouin, thermal

220, 227

Raman

217, 223, 226

Rayleigh

217, 228, 230

Rayleigh, line

228

Rayleigh, thermal

220, 228

Rayleigh, wing

228, 230, 231

Stokes

219

transient

222

Stokes scattering

219

thermal

Brillouin scattering

220, 227

Rayleigh scattering

220, 228

Stokes

–anti-Stokes coupling

222

emission

higher-order

222

line

218

scattering

spontaneous

219

stimulated

219

shift

224–227

spontaneous scattering

219

stimulated scattering

219

vector 77

Stop

127

Strong-signal solutions

19

STRS (stimulated thermal Rayleigh scattering)

228

Styrene

225, 231

Sulfur

225

Sulfurhexafluoride

229

Sum frequency generation

144, 153, 167

of UV radiation

167–169

Superradiance

37

Surface

index

105, 146

ray

105

spherical

113

Susceptibility

19

complex

10

electric

6

linear

205

magnetic

6

nonlinear

205

third-order

206, 221

third-order

nonlinear

221

SVE (Slowly varying envelope) 9

approximation

9

for di raction

9

SVE (slowly varying envelope)

equation

74, 80

Symmetry conditions

Kleinman

150

Symplectic optical system

116

Synchrotron radiation 47

System

four-level

24

general

astigmatic

116

parabolic

112

Landolt-B¨ornstein

New Series VIII/1A1

262

Index

homogeneous

16

inhomogeneous

16

matrix

55

optical

non-symmetrical

112

symplectic optical

116

three-level 23

two-level

11

Te 143, 166

Tellurium

143

Tetrabromomethane

229

Tetrachloroethane

225

Tetrachloroethylene

225, 226

Tetrachloromethane

230

Tetragonal

105

Tetrahydrofuran

225

Thallium Arsenic Selenide

143

Theory

scalar

of di raction

85

vector

of di raction

85

Thermal

detector

48

grating

237

lens 113

scattering

Brillouin, stimulated

220, 227

Rayleigh, stimulated

220, 228

Thermodynamic considerations

21

Thermopile

48

Thick lens

110

in air

113

Thin lens

113

Third harmonic generation

152, 156, 208

of Nd:YAG laser radiation

159

of Ti:sapphire laser radiation

163

Third-order

nonlinear susceptibility

206, 221

spherical aberration

119

Three-dimensional propagation

127

Three-level system

23

Three-wave interaction

144

Threshold

condition

4

SBS-

238, 239

Ti:sapphire laser radiation

fourth harmonic generation of

164

second harmonic generation of

163

third harmonic generation of

163

Time

constants

31

decay, T1

15

decay, T2

16

-dependent di raction theory

89

-reversed replica

236

Tintetrabromide

225

Tintetrachloride

225

Tl 210

Tl3AsSe3

143, 167

Toluene

225, 226, 229, 231

Total reflection

101

Townes

3

Tracing

ray

55

Transform

Fourier

88

Transformation

ABCD

120

waist

124

Transient stimulated scattering

222

Triclinic

105

Trigonal

105

Twist

59

Two-dimensional propagation

126

Two-level

system

11

transition

saturation intensity

17

Two-wave mixing

242

Uniaxial

crystal

145

negative

146

positive

146

negative

crystal

105

positive

crystal

105

Up-conversion

of CO2 laser radiation

171

of near IR radiation

170

Upper-level lifetime T1

18

Urea

143, 161, 165, 179

UV

radiation

sum frequency generation of

167–169

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

Value

principal 145

Vanillin (4-Hydroxy-3-Methoxy-Benzaldehyde) 142

Vapor

barium 225 cesium 226

Landolt-B¨ornstein

New Series VIII/1A1

Index

263

Variance

Water

225, 226, 229, 230

ellipse

57

Wave

matrix

56

cylindrical

79

Vector

equation

73, 78

Bloch

33

plane

7, 79

-ial Bessel beam

80

approximation

152

Jones

75

representation

87

phase conjugator

236

spherical

8, 79

Stokes

77

vector

theory of di raction

85

cylindrical

78

wave

spherical

78

cylindrical

78

Waveguide coupling

127, 128

spherical

78

Width

Vibration

beam

57

-al Raman line

218, 223

long-term

69

-rotation Raman line

218

Wigner distribution

53

Visible region

Wing scattering

cw optical parametric oscillation in 176

Rayleigh, stimulated 228, 230, 231

femtosecond optical parametric oscillation in

X-ray region

47

184

nanosecond optical parametric oscillation in

Xe

211, 238

176

Yb

210

picosecond optical parametric oscillation in 180

Waist

Zinc Germanium Phosphide 143

beam

82

Zn

210

position 60

ZnGeP2 143, 166, 167, 171, 175, 186

transformation

124

ZnSe

175

Walk-o angle

145

ZnTe

175

Landolt-B¨ornstein

New Series VIII/1A1

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