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Wave mixing

Pastirk I, Brown E J, Grimberg B I, Lozovoy V V and Dantus M 1999 Sequences for controlling laser excitation with femtosecond three-pulse four-wave mixing Faraday Discuss. 113 401... [Pg.280]

In heterodyne detected. s + 1 wave mixing, phase infonnation is retained and one can take a fidl measure of... [Pg.1183]

B1.3.2.4 TIME EVOLUTION OF THE THIRD ORDER POLARIZATION BY WAVE MIXING ENERGY LEVEL (WMEL) DIAGRAMS. THE RAMAN SPECTROSCOPIES CLASSIFIED... [Pg.1186]

In the complex mathematical representation, quadrature means that, at the (s + 1) wave mixing level, the product of. s input fields constituting the. sth order generator and the signal field can be organized as a product of (s + l)/2 conjugately paired fields. Such a pair for field is given by = ,One sees that the exponent... [Pg.1187]

Chen P C, Hamilton J P, Zilian A, Labuda M J and Wright J C 1998 Experimental studies for a new family of infrared four wave mixing spectroscopies Appl. Spectrosc. 52 380-92... [Pg.1226]

Albrecht A C, Smith S P, Tan D, Schaertel S A and DeMott D 1995 Ultrasharp spectra and ultrafast timing from noisy coherence in four wave mixing Laser Rhys. 5 667-75... [Pg.1229]

Dugan M A and Albrecht A C 1991 Radiation-matter oscillations and spectral line narrowing in field-correlated four-wave mixing I theory Rhys. Rev. A 43 3877-921... [Pg.1229]

Ulness D J and Albrecht A C 1996 Four-wave mixing in a Bloch two-level system with incoherent laser light having a Lorentzian spectral density analytic solution and a diagrammatic approach Rhys. Rev. A 53 1081-95... [Pg.1229]

Steffen T and Duppen K 1996 Time resolved four- and six-wave mixing in liquids I. Theory J. Chem. Phys. 105 7364-82... [Pg.1230]

Koroteev N I 1996 Optical rectification, circular photogalvanic effect and five-wave mixing in optically active solutions Proc. SPIE 2796 227-38... [Pg.1231]

Yang M, Kim J, Jung Y and Oho M 1998 Six-wave mixing spectroscopy resonant coherent hyper-Raman scattering J. Chem. Phys. 108 4013-20... [Pg.1231]

Heinz T F, Himpsel F J, Palange E and Burstein E 1989 Electronic transitions at the CaF2/Si(111) interface probed by resonant three-wave-mixing spectroscopy Phys. Rev. Lett. 63 644-7... [Pg.1303]

Bardeen C J and Shank C V 1994 Ultrafast dynamics of the solvent-solute Interaction measured by femtosecond four-wave mixing LD690 In n-alcohols Chem. Phys. Lett. 226 310-16... [Pg.1997]

Joo T and Albrecht A C 1993 Electronic dephasing studies of molecules in solution at room temperature by femtosecond degenerate four wave mixing Chem. Phys. 176 233—47... [Pg.2000]

Vaccaro P H 1995 Resonant four-wave mixing spectroscopy a new probe for vibrationally-excited species Molecular Dynamics and Spectroscopy by Stimulated Emission Pumping (Advances in Chemistry Series) vol 7, ed H-L Dai and R W Field (Singapore World Scientific) p 1... [Pg.2088]

Deooia P L, Hoohstrasser R M and Trommsdorff H P 1980 Vibrationai reiaxation in moieouiar orystais by four-wave mixing naphthaiene Chem. Phys. Lett. 72 1-4... [Pg.3052]

Coherent anti-Stokes Raman scatttering, or CARS as it is usually known, depends on the general phenomenon of wave mixing, as occurs, for example, in a frequency doubling crystal (see Section 9.1.6). In that case three-wave mixing occurs involving two incident waves of wavenumber v and the outgoing wave of wavenumber 2v. [Pg.367]

The wave mixing is much more efficient when (vj — V2) = v, where is the wavenumber of a Raman-active vibrational or rotational transition of the sample. [Pg.367]

In Equation (9.18) we have treated Vj and V2 differently by involving two photons of Vj and only one of V2. However, four-wave mixing involving one photon of Vj and two of V2 to produce V4, represented by... [Pg.368]

Table 1 Coefficients for 7[ (a ) for third harmonic generation (THG), degenerate four wave mixing (DFWM), electric field induced second harmonic generation (ESHG), and Kerr effect in methane at the experimental geometry rcH = 2.052 a.u. A CCSD wavefunction and the t-aug-cc-pVDZ basis were used. (Results given in atomic units, the number in parentheses indicate powers of ten.)... Table 1 Coefficients for 7[ (a ) for third harmonic generation (THG), degenerate four wave mixing (DFWM), electric field induced second harmonic generation (ESHG), and Kerr effect in methane at the experimental geometry rcH = 2.052 a.u. A CCSD wavefunction and the t-aug-cc-pVDZ basis were used. (Results given in atomic units, the number in parentheses indicate powers of ten.)...

See other pages where Wave mixing is mentioned: [Pg.263]    [Pg.1181]    [Pg.1184]    [Pg.1184]    [Pg.1185]    [Pg.1187]    [Pg.1190]    [Pg.1206]    [Pg.1212]    [Pg.1215]    [Pg.1226]    [Pg.1273]    [Pg.2082]    [Pg.2084]    [Pg.2565]    [Pg.258]    [Pg.258]    [Pg.258]    [Pg.258]    [Pg.134]    [Pg.139]    [Pg.318]    [Pg.319]    [Pg.134]    [Pg.52]    [Pg.301]    [Pg.125]    [Pg.132]    [Pg.132]   
See also in sourсe #XX -- [ Pg.367 ]

See also in sourсe #XX -- [ Pg.367 ]




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4- wave mixing spectroscopy

Backward degenerate four-wave mixing

Degenerate four-wave mixing

Degenerate four-wave mixing DFWM)

Degenerate four-wave mixing EFISH)

Degenerate four-wave mixing electric field induced second

Degenerate four-wave mixing harmonic generation

Degenerate four-wave mixing methods

Degenerate four-wave mixing nonlinear optics

Degenerate four-wave mixing, third-order

Degenerate wave mixing

Degenerated four-wave mixing

Electric degenerate four-wave mixing

Electric four-wave mixing

Four wave mixing geometry

Four-wave mixing

Four-wave mixing components

Four-wave mixing experiment

Four-wave mixing experiment schematic

Four-wave mixing frequency domain

Four-wave mixing limitations

Four-wave mixing molecular

Four-wave mixing nonlinear response function

Four-wave mixing photon echoes

Four-wave mixing process

Four-wave mixing scheme

Four-wave mixing stimulated emission

Four-wave mixing techniques

Four-wave mixing theory

Four-wave mixing time delayed

Four-wave mixing transient

Four-wave mixing, heterodyne-detected

Four-wave mixing, third-order effects

Internal Waves, Turbulence, Diapycnal Mixing

Mixed Rossby-gravity waves

Mixing of wave functions

Nearly Degenerate and Transient Wave Mixing

Nondegenerate Optical Wave Mixing Harmonic Generations

Nonlinear optical measurements degenerate four-wave mixing

Optical wave mixing

Photon energy, four-wave mixing

Picosecond degenerate four-wave mixing

Poly degenerate four-wave mixing

Pure- and Mixed-spin Wave Functions

Screw mixing, double-wave

Six-wave mixing

Six-wave mixing process

Solution 4 Four Wave Mixing Experiments

Spectroscopic four-wave mixing

Stationary Degenerate Four-Wave Mixing

Third degenerate four-wave mixing

Third-harmonic generation degenerate four-wave mixing

Third-order nonlinear optical measurement degenerate four-wave mixing

Third-order optical nonlinearity degenerate four-wave mixing

Three wave mixing

Three-wave mixing processes doubling, sum and difference frequency

Three-wave mixing signal

Time-delayed four-wave mixing with

Transient wave mixing

Wave function mixed-spin state

Wave-induced mixing

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