Spatial Optical Parametric Coupling of Picosecond Light Pulses and Transverse Relaxation Effect in Resonant Media
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概要
- 論文の詳細を見る
The dynamical properties of a third-order nonlinear optical process, in whichtwo incident light pulses with wave vectors k3 and k. generate a light wave with2k. -k. in resonant media, are discussed with particular attention to the effectof transverse relaxation time T.. It is shown that the correlation trace (outputlight energy vs incident pulse separation) for this process provides a generalmeans of obtaining information on ultrashott T. for both the homogeneously andinhomogeneously broadened transitions, and for both Z.(pulse width)< T. andt, >T. . An experimental demonstration for t, >T. is given by using a dye moleculeand a picosecond light source.
- 社団法人日本物理学会の論文
- 1979-11-15
著者
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Yajima Tatsuo
The Institute For Solid State Physics The University Of Tokyo
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Taira Yoichi
The Institute For Solid State Physics The University Of Tokyo
関連論文
- Wide-Range Measurement of Non-Impact Excitation Spectrum Using Ultrashort Light Pulses
- Collision-Induced Two-Photon Absorption of Ultrashort Light Pulses
- Two-Photon Resonant Third Harmonic Generation under Coherent Transient Condition
- Spatial Optical Parametric Coupling of Picosecond Light Pulses and Transverse Relaxation Effect in Resonant Media
- Tunable Subpicosecond Pulse Generation from 535 to 590 nm by a Hybridly Mode-Locked Dye Laser
- Spectral Properties and Tunability of Far-Infrared Difference-Frequency Radiation Produced by Picosecond Laser Pulses
- Cross Relaxation Effect in the Polarization Spectroscopy of Condensed Phases
- Free Carrier Faraday Effect in n-Type InSb with a Submillimeter-Wave Laser
- Far-Infrared Difference-Frequency Generation by Picosecond Laser Pulses
- Generation of Ultrashort Light Pulses by Electronic Self-Phase Modulation
- Rapid-Scan Autocorrelator for Monitoring cw Mode-Locked Dye Laser Pulses
- Far-Infrared Generation by Self-Beating of Dye Laser Light
- Temperature Dependence of Stimulated Brillouin Scattering in Quartz
- Far-Infrared Beat Generation in LiIO_3
- Ultrafast Relaxation Study by Resonant Rayleigh-Type Mixing Spectroscopy Using Picosecond Light Pulses
- Optical Mixing Due to Third Order Nonlinear Polarization in Quartz
- Two-Photon Resonant Rayleigh-Type Optical Mixing and Relaxation
- Generation of Broadly Tunable Subpicosecond Light Pulses from a Synchronously and Passively Mode-Locked CW Dye Laser