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Publishing Language: Chinese

EXPERIMENTAL TEACHING PROMOTION OF LASER-INDUCED THERMAL LENSING EFFECT IN TWO-DIMENSIONAL MATERIALS: SPATIAL SELF-PHASE MODULATION

Bo YANG1Jie LI1Yiming LI1Zhonghua QIAO1Jiaqi TANG1Xiaoqing YAN1,2Jin WANG1,3Dongqi LIU1,3Fang LIU1,2,4( )
School of Physics, Nankai University, Tianjin 300071
Key Laboratory of Weak Light Nonlinear Photonics, Ministry of Education, Nankai University, Tianjin 300071
National Experimental Teaching Demonstration Center for Basic Physics, Nankai University, Tianjin 300071
Ultrafast Electron Microscopy Laboratory, Nankai University, Tianjin 300071
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Abstract

By integrating theoretical analysis with experimental demonstration, this study develops a teaching apparatus for investigating the laser-induced thermal lens effect based on spatial self-phase modulation (SSPM). The apparatus makes it possible to observe the dynamic evolution of SSPM diffraction fringes from formation to distortion and finally stabilization. The results confirm a linear dependence of the diffraction-ring number on laser intensity and further show that, under the same incident intensity, wavelengths closer to the material’s absorption peak generate more diffraction rings. The experimental teaching system is extended from the conventional NMP (N-methylpyrrolidone) suspension system to a safer tea polyphenol-ethanol system and to solid samples. The proposed apparatus not only broadens the application of thermal lensing in experimental teaching, but also offers a useful platform for further studies of thermal lensing in emerging materials.

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Physics and Engineering
Pages 180-184

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Cite this article:
YANG B, LI J, LI Y, et al. EXPERIMENTAL TEACHING PROMOTION OF LASER-INDUCED THERMAL LENSING EFFECT IN TWO-DIMENSIONAL MATERIALS: SPATIAL SELF-PHASE MODULATION. Physics and Engineering, 2026, 36(3): 180-184. https://doi.org/10.26599/PHYS.2026.9320323

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Received: 07 November 2025
Revised: 30 January 2026
Published: 07 August 2026
© 2026 Physics and Engineering.