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Updated: Jan 7, 2026

Direct Imaging of Laser-driven Ultrafast Molecular Rotation
Published on: February 4, 2017
Convective Onset in Thermal Lensing: Systematic Pulse-Number-Dependent Experiments and Theoretical Insights into the
Aman Sharma1, Debabrata Goswami1,2
1Centre for Lasers and Photonics, Indian Institute of Technology, Kanpur 208016, India.
None:
This study investigates thermal lensing induced by femtosecond-laser pulses, a key technique for examining the thermo-optical response of materials under high-repetition-rate irradiation. Using both experimental and theoretical approaches, this work examines how thermal lensing develops and evolves over time with a focus on the effects of pulse count, pump-on duration, and pump-off duration. The study examines how conduction and convection mechanisms compete during heat dissipation, with conduction dominating at a lower number of pulses. The theoretical approach emphasizes heat generation from single-pulse interactions, which is a central aspect of this research. Importantly, the study also shows the potential thermal lens (TL) amplitude from a single femtosecond pulse, providing insights into the early stages of heat buildup. These results enhance our understanding of heat transfer in ultrafast laser-matter interactions, providing more detailed insight into how thermal lenses form and relax.
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