非线性光学
非线性光学是光学的一个分支,研究各类光学非线性现象,旨在发现新型高效的非线性材料。研究中关注的材料包括激光活性介质、半导体、光子晶体等,这些材料有望在高强度或高重复率超短光脉冲的作用下,于单丝和多丝状态中产生极端的光与物质相互作用。
非线性光学对于相干宽带光源的研发、脉冲压缩技术的发展,以及基于强脉冲在大孔径功能材料中自作用效应产生的相干宽带辐射而言,都至关重要。
Light Conversion 的产品组合包含多种激光源,如 CARBIDE 和 PHAROS 飞秒激光器、FLINT 振荡器以及 OPCPA 系统,这些设备被广泛用于非线性现象的研究。
相关期刊
Supercontinuum generation in scintillator crystals
V. Marčiulionytė, G. Tamošauskas, M. Šutovas, and A. Dubietis
Scientific Reports • 2025
All-Solid-State Post-Compression of Low-Energy Pulses at High Repetition Rate
V. Marčiulionytė, J. Banys, J. Vengelis, G. Tamošauskas, and A. Dubietis
Photonics • 2024
Characterizing post-compression of mJ-level ultrafast pulses via loose focusing in a gas cell
F. Zhang, A. Pelekanidis, A. Karpavicius, M. Gouder, J. Seifert et al.
Optics Express • 2024
Femtosecond pulse shaper built into a prism compressor
Z. M. Faitz, D. Im, and M. T. Zanni
Optics Express • 2024
Giant nonlinear optical wave mixing in a van der Waals correlated insulator
L. Yue, C. Liu, S. Han, H. Hong, Y. Wang et al.
Science Advances • 2024
Hybrid air-bulk multi-pass cell compressor for high pulse energies with full spatio-temporal characterization
A. Omar, M. Hoffmann, G. Galle, F. Sylla, and C. J. Saraceno
Optics Express • 2024
Lightwave-electronic harmonic frequency mixing
M. Yeung, L. Chou, M. Turchetti, F. Ritzkowsky, K. K. Berggren et al.
Science Advances • 2024
Measurement polarization-maintaining photonic crystal fiber nonlinear response using phase shift between orthogonal polarization modes
M. Kulieşaitš, J. Vengelis, and V. Jarutis
Optics Express • 2024
Spatial-to-spectral phase coupling mechanisms in bulk continuum generation
B. Maingot, N. Forget, and A. Jullien
Journal of Physics: Photonics • 2024
Spectral broadening of µJ-level pulses around 8 µm in a Germanium-based multi-pass scheme
F. Gucci, A. Baserga, L. Moretti, D. Gatti, M. Corti et al.
Optics Express • 2024
非线性光学
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非线性光学