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TiCT MXene中的非线性光吸收:一项理论研究。

Nonlinear light absorption in TiCT MXene: a theoretical study.

作者信息

Minassian Hayk, Melikyan Armen, Gonçalves Manuel Rodrigues, Petrosyan Petros

机构信息

A. Alikhanian National Science Laboratory Alikhanyan Str. Build. 2 0036 Yerevan Armenia

Institute of Applied Problems of Physics of NAS 25, Hr. Nersessian Str. 0014 Yerevan Armenia

出版信息

RSC Adv. 2025 Jul 10;15(29):23934-23942. doi: 10.1039/d5ra01751c. eCollection 2025 Jul 4.

Abstract

Nonlinear absorption of MXenes has been investigated experimentally in several recent publications, and applications of these new 2D materials in broadband ultrafast photonics has already been demonstrated. In particular, MXenes have been used in the generation of highly stable femtosecond pulses in mode-locked fiber lasers. The optical nonlinearities appearing in different MXenes in the vis-NIR wavelength range have been explained theoretically based on the theory of saturation of nonlinear absorption in a two-level atomic system. This approach requires a fitting procedure applied to determine the saturation intensity of the MXene. However, this approximation does not account for the band structure of MXene, and therefore the microscopic character of the saturation of nonlinear absorption is still not understood. In this communication we use published results of calculations of the band structure of titanium carbide MXene and apply the density matrix theory to calculate the nonlinear absorption coefficient for a two-band model, in the resonance approximation. The latest experimental results on nonlinear transmittance at pump wavelengths between 1000 nm and 1500 nm are discussed in this framework and the saturation dynamics of absorption is revealed.

摘要

最近有几篇出版物对MXenes的非线性吸收进行了实验研究,并且这些新型二维材料在宽带超快光子学中的应用已经得到了证明。特别是,MXenes已被用于锁模光纤激光器中产生高度稳定的飞秒脉冲。基于二能级原子系统中非线性吸收饱和理论,从理论上解释了不同MXenes在可见-近红外波长范围内出现的光学非线性。这种方法需要应用拟合程序来确定MXene的饱和强度。然而,这种近似没有考虑MXene的能带结构,因此非线性吸收饱和的微观特性仍然不明确。在本通讯中,我们使用已发表的碳化钛MXene能带结构计算结果,并应用密度矩阵理论在共振近似下计算双带模型的非线性吸收系数。在此框架下讨论了泵浦波长在1000 nm至1500 nm之间的非线性透过率的最新实验结果,并揭示了吸收的饱和动力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bb8/12242793/9547e41abf61/d5ra01751c-f1.jpg

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