Excitation Condition Influence on Nonlinear Absorption in 2D Materials: A Comparative Study in the DUV
Investigating the nonlinear absorption (NLA) behavior of 2D materials in the deep ultraviolet (DUV) region presents unique challenges due to the limited research available. This study aims to provide a comprehensive analysis of how excitation conditions, such as excitation wavelength, pulse width, and facula area, influence NLA results.
To overcome the scarcity of DUV-specific research, we conducted a comparative analysis. This involved examining studies on other 2D materials that were conducted under similar excitation conditions. By drawing parallels between our experimental findings and existing research, we aim to gain a deeper understanding of the NLA behavior observed in our system.
Comparing our results with those from similar studies allows us to validate our observations and draw more meaningful conclusions. This approach is particularly valuable in the context of DUV NLA, where research is still developing.
Our comprehensive search and comparative analysis contribute to a more robust understanding of NLA in 2D materials within the DUV region. By highlighting the influence of excitation conditions and providing a comparative framework, this research enhances the credibility and validity of our findings and contributes valuable insights to the field.
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