Determination of the Subpicosecond Laser Pulse Chirp in the Middle IR Range Based on the Fourth Harmonic Noncollinear Generation
- Autores: Hovhannisyan D.L.1, Vardanyan A.H.1, Hovhannisyan G.D.2
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Afiliações:
- National Institute of Metrology
- Yerevan State University
- Edição: Volume 53, Nº 2 (2018)
- Páginas: 112-128
- Seção: Article
- URL: https://journals.rcsi.science/1068-3372/article/view/228606
- DOI: https://doi.org/10.3103/S1068337218020032
- ID: 228606
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Resumo
A new method is proposed to determine the subpicosecond laser pulse chirp in the middle IR range at the central wavelength of 10 μm, based on the generation of the second-harmonic pulses both by the bandwidth-limited and frequency-modulated subpicosecond pulses and the subsequent noncollinear generation of the fourth-harmonic radiation by the corresponding second-harmonic pulses. The time dependences are given of the instantaneous frequency of the frequency-modulated second-harmonic pulse at the central wavelength of 5 μm, generated in the field of the frequency-modulated subpicosecond IR pulse, propagating in the negative uniaxial AgGaS2 crystal along the direction of 61°36′ relative to the optical axis. These results can be used in designing a nonlinear optical phase correlator to determine the phase and time profile of the subpicosecond laser pulse in the middle IR range.
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Sobre autores
D. Hovhannisyan
National Institute of Metrology
Autor responsável pela correspondência
Email: davidhl@ysu.am
Armênia, Yerevan
A. Vardanyan
National Institute of Metrology
Email: davidhl@ysu.am
Armênia, Yerevan
G. Hovhannisyan
Yerevan State University
Email: davidhl@ysu.am
Armênia, Yerevan
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