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References for 4.4

245

References for 4.4

72Kai

Kaiser, W., Maier M.: Stimulated Rayleigh, Brillouin and Raman Spectroscopy, Laser

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Co., 1972, pp. 1077–1150.

77Zel

Zel’dovich, B.Ya., Shkunov, V.V.: Wavefront reproduction in stimulated Raman scat-

tering; Sov. J. Quantum Electron. (English Transl.) 7 (5) (1977) 610–615.

82Fei

Feinberg, J.: Self-pumped, continuous-wave phase conjugator using internal reflection;

Opt. Lett. 7 (1982) 486.

82Pep

Pepper, D.M.: Nonlinear optical phase conjugation; Opt. Eng. 21 (1982) 156–183.

85Gue

G¨unter, P., Voit, E., Zha, M.Z., Albers, J.: Self-pulsation and optical chaos in self-

pumped photorefractive BaTiO3; Opt. Commun. 55 (1985) 210–214.

86Pep

Pepper, D.M.: Hybrid phase conjuagtor/modulators using self-pumped 0◦-cut and 45◦-

cut BaTiO3 crystals; Appl. Phys. Lett. 49 (16) (1986) 1001–1003.

88Gue

G¨unter, P., Huignard, J.-P.: Photorefractive materials and their applications I–II, Topics

in Applied Physics, Vol. 61–62, Berlin: Springer-Verlag, 1988.

89Agr

Agrawal, G.P.: Nonlinear fiber optics, Boston: Academic Press, 1989.

91Cro

Crofts, G.J., Damzen, M.J., Lamb, R.A.: Experimental and theoretical investigation of

two-cell stimulated-Brillouin-scattering systems; J. Opt. Soc. Am. B 8 (1991) 2282–2288.

93Yeh

Yeh, P.: Introduction to photorefractive nonlinear optics, New York: John Wiley & Sons,

Inc 1993.

94Wec

Wechsler, B.A., Klein, M.B., Nelson, C.C., Schwartz, R.N.: Spectroscopic and pho-

torefractive properties of infrared-sensitive rhodium-doped barium titanate; Opt. Lett.

19 (8) (1994) 536–538.

95Jac

Jackel, S., et al.: Low threshold, high fidelity, phase conjugate mirrors based on CS2

filled hollow waveguide structures; JNOPM 11 (1995) 89–97.

95Mu

Mu, X., Shao, Z., Yue, X., Chen, J., Guan, Q., Wang, J.: High reflectivity self-pumped

phase conjugation in an unusually cut Fe-doped KTa1−xNbxO3 crystal; Appl. Phys.

Lett. 66 (1995) 1047.

95Nol

Nolte, D.D.: Photorefractive e ects and materials, Norwell: Kluwer Academic Publish-

ers, 1995.

96Sol

Solymar, L., Webb, D.J., Grunnet-Jepsen, A.: The physics and applications of photore-

fractive materials, Oxford: Clarendon Press, 1996.

97Eic

Eichler, H.J., Haase, A., Kunde, J., Liu, B., Mehl, O.: Fiber phase-conjugator as re-

flecting mirror in a MOPA-arrangement, Solid State Lasers VI, San Jos´e (California);

Proc. SPIE (Int. Soc. Opt. Eng.) 2986 (1997) 46–54.

97Eic

Eichler, H.J., Kunde, J., Liu, B.: Quartz fibre phase conjugators with high fidelity and

reflectivity; Opt. Commun. 139 (1997) 327–334.

Landolt-B¨ornstein

New Series VIII/1A1

246

References for 4.4

97Huo

Huot, N., Jonathan, J.M.C., Rytz, D., Roosen, G.: Self-pumped phase conjugation in a

ring cavity at 1.06 µm in cw and nanosecond regimes using photorefractive BaTiO3:Rh;

Opt. Commun. 140 (1997) 296.

97Yos

Yoshida et al.: SBS phase conjugation in a bulk fused-silica glass at high energy opera-

tion, CLEO 1997; OSA Tech. Dig. Ser. 11 (1997) 117–118.

98Eic

Eichler, H.J., Dehn, A., Haase, A., Liu, B., Mehl, O., R¨ucknagel, S.: High repetition rate

continuously pumped solid state lasers with phase conjugation, Solid State Lasers VII,

San Jos´e (California); Proc. SPIE (Int. Soc. Opt. Eng.) 3265 (1998) 200–210.

98Lob

Lobel, M., Petersen, P.M., Johansen, P.M.: Single-mode operation of a laser-diode array

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99Eic

Eichler, H.J., Mehl, O.: Multi amplifier arrangements with phase conjugation for power-

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02Eic

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03Rie

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04Rie

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Huignard, J.-P. (eds.): Phase conjugate laser optics, Hoboken, New Jersey: John Wiley

& Sons, 2004.

Landolt-B¨ornstein

New Series VIII/1A1

Index

247

Index

α−HIO3

143, 183

α−Iodic Acid

143

β−BaB2O4 142

π-pulse

36

6LiNbO3

227

6LiTaO3

227

7LiNbO3

227

1,1,1-Trichloroethane

226

1,2-Dichloroethane

224

1,2-Diethylbenzene

224

1,2-Dimethylcyclohexane

224

1,3-Dibromobenzene

224

1,3-Pentadiene

225

1,4-Dimethylcyclohexane

224

1,4-Dimethylnitrobenzene

231

1,4-Dioxane

224

1-Bromonaphthalene

225, 231

1-Bromopropane

224

1-Chloronaphthalene

225

1-Fluoro-2-chlorobenzene

224

2π-pulse 35

2,2-Dichlorodiethylether

224

2,4-Dinitrotoluene 231

2-Bromopropane

224

2-Ethylnaphthalene

225

2-Nitropropane

225

3-Methyl-4-Nitro-Pyridine-1-Oxide 142 3-Methylbutadiene 224 4-Hydroxy-3-Methoxy-Benzaldehyde (Vanillin)

142

Abbe’s number 97

ABCD

matrix 111 transformation 120

Aberration 127 lens 117 spherical 117

third-order 119 Absorber

saturable 237 Absorbing

gas 237 liquid 237

Absorption excited-state 237

Acetic acid

224, 229

Acetone

224, 226, 229, 230, 238

Achromatic correction

97

Acoustic phonons

217

ADA

143, 165

Adiabatic

equations

20

pulse amplification 25

ADP

143, 160, 161, 164, 166, 168, 176, 180

Ag3AsS3 142, 166, 171, 173, 186

Ag3SbS3 142

AgGaS2

142, 166, 171, 173, 186

AgGaSe2 142, 166, 174, 186

Air

thick lens in

113

Airy’s disc

92

Al2O3 225

Ammonia

225

Ammonium Dihydrogen Arsenate

143

Ammonium Dihydrogen Phosphate

143

Amplification

stimulated

221

Amplifier

feed-back

3

Angle

birefringence

145

Brewster’s

101

divergence

82

walk-o 145

Angular

moment

56

-spectrum representation 87

Aniline

224, 229

Annular aperture

92

Anti-Stokes

emission, higher-order

222

line

218

Raman scattering, coherent 222

scattering

222

Aperture

annular

92

circular

90

length

151

rectangular

89

Apodization

Gaussian

114

Landolt-B¨ornstein

New Series VIII/1A1

248

Index

Approach

perturbation

206

Approximation

dipole

12

far-field, Fraunhofer

87

Fraunhofer

88

far-field

87

Fresnel’s

85, 86

Fresnel–Kirchho

86

plane-wave

152

Rayleigh–Sommerfeld

86

rotating-wave

14

Ar

211

Argon laser

166

Astigmatic

beam

general

121, 123

simple

120, 121

general

64

simple

63

system

general

116

Astigmatism

inner

64

intrinsic

60, 65

Axis

principal

58

of the beam

57

Azoxybenzene

231

Ba

210

Ba2NaNb5O15

142, 227

Banana (Barium Sodium Niobate)

142, 158, 179,

183

Barium Sodium Niobate (Banana)

142, 158, 179,

183

Barium vapor

225

Basov

3

BaTiO3 237, 242, 244

BBO

142, 157–161, 163–166, 168, 172, 177, 181,

184

Be

210

Beam

Bessel

di raction-free 79

real

80

vectorial

80

characterization

53

classification

61

conversion

65

diameter

generalized

57

di raction-free 79

elliptical Gaussian

57

extraordinary

145

fanning

243

fluctuation matrix

67

Gauss

–Hermite

81

–Laguerre

83

–Schell model

53

Gaussian

53, 81

elliptical

57

general astigmatic

64, 121, 123

Hermite–Gaussian

53

higher-order

123

Laguerre–Gaussian

53

ordinary

145

partially coherent

54

positional stability

67

principal axis of

57

propagation

120

Gaussian

111

ratio, e ective

60

pseudo-symmetric

64

simple astigmatic

63, 120, 121

stigmatic

62, 120, 121

waist

82

width

57

long-term

69

Benzaldehyde

224, 229

Benzene

224, 226, 229–231

Benzene-d6 224

Benzonitrile

224

Benzonitrol

231

Benzoylchloride 231

Benzylidenaniline

231

Bessel beam

di raction-free 79

real 80

vectorial

80

Beta-Barium Borate

142

Bi12GeO20 242

Bi12SiO20 242

Bi12TiO20 242

Biaxial crystal

105, 145

Birefringence

106

angle

145

Bisectrix

147

Black-body radiator

47

Bloch vector

33

Bolometer

48

Brewster angle

101

-tilted plate

76

Brillouin

doublet

218

gain coe cient

238

lines

217

scattering

stimulated

217, 227, 229, 236

stimulated, thermal 220, 227

Broadening

collision

28

Landolt-B¨ornstein

New Series VIII/1A1

Index

249

Doppler

28

homogeneous

29, 223

inhomogeneous 30, 223

line

26, 28

pressure

28

saturation

29

types of

29

Bromobenzene

224, 226, 229, 231

Bromopropane

224

Butane

225

Butyl-benzene (tert.)

224

C10H11N3O6 142

C10H13N3O3 142

C11H14N2O3 142

C2F6 238

C6H6N2O3 142

C8H8O3 142

Ca

210

Ca+

210

Cadmium Germanium Arsenide 142

Cadmium Selenide

142

Calcite

225, 227

Calculus

Jones

75

Mueller 77

Calorimeter

50

Calorimetry

photoacoustic

50

Carbondioxide

225

Carbondisulfide

224, 226, 229–231

Carbonmonoxide

225

Carbontetrachloride

224, 229

Cardinal

plane

110

point

110

CARS (coherent anti-Stokes Raman scattering)

222

Cat conjugator

243

CBO

142, 159, 160

CCl4

238

Cd

210

CDA

142, 156, 180

CdGeAs2 142, 166, 167, 174

CdSe

142, 171, 174, 186

CdTe

242

Centered moment 55

Cesium Borate

142

Cesium Dideuterium Arsenate

142

Cesium Dihydrogen Arsenate

142

Cesium Lithium Borate 142

Cesium vapor

226

CH4

238

Characterization

beam

53

Chlorine

226

Chlorobenzene

224, 226, 231

Landolt-B¨ornstein

New Series VIII/1A1

Chloroform

224, 229

Chloromethylbutane

224

Chloronaphthalene

231

Circular aperture 90

Classification

104

beam

61

CLBO

142, 157, 160, 161

CO 211

laser

166

CO2 laser radiation

harmonic generation of 166 up-conversion of 171

Coe cient

gain

18, 229

Miller

147

nonlinear

e ective

150

scattering

226

Seebeck

48

Coherence length 238

Coherent

anti-Stokes Raman scattering (CARS) 222 interaction 31

partially 54 pulses, resonant 34

Collins integral 126 Collision broadening 28

Coma

119

Complex

notation

6

q-parameter

120

refractive index

8, 103

susceptibility 10

Concave

grating

Rowland

114

mirror

spherical

114

Condition

phase-matching

208

resonance

5

steady-state

5

symmetry

Kleinman

150

threshold

4

Conductivity

electric

6

Conjugation fidelity

238

Conjugator

cat

243

Conservation

of momenta

208

Constant

time

31

Construction

Listing’s

110

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