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Modeling of Nonlinear Optical Response in Gaseous Media and its Comparison with Experiment

机译:气态介质中非线性光学响应的​​建模及其与实验的比较

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摘要

This thesis demonstrates the model and application of nonlinear optical response with Metastable Electronic State Approach (MESA) in ultrashort laser propagation and verifies accuracy of MESA through extensive comparison with experimental data. udThe MESA is developed from quantum mechanics to describe the nonlinear off-resonant optical response together with strong-field ionization in gaseous medium. The conventional light-matter interaction models are based on a piece-wise approach where Kerr effect and multi-photon ionization are treated as independent nonlinear responses. In contrast, MESA is self-consistent as the response from freed electrons and bound electrons are microscopically linked. It also can be easily coupled to the Unidirectional Pulse Propagation Equations (UPPE) for large scale simulation of experiments.udThis work tests the implementation of MESA model in simulation of nonlinear phase transients of ultrashort pulse propagation in a gaseous medium. The phase transient has been measured through Single-Shot Supercontinuum Spectral Interferometry. This technique can achieve high temporal resolution (10$fs$) and spatial resolution (5 $mu m$). Our comparison between simulation and experiment gives a quantitive test of MESA model including post-adiabatic corrections. udThis is the first time such a comparison was achieved for a theory suitable for large scale numerical simulation of modern nonlinear-optics experiments. In more than one respect, ours is a first-of-a-kind achievement. In particular,udLarge amount of data are compared. We compare the data of nonlinear response induced by different pump intensity in Ar and Nitrogen. The data sets are three dimensions including two transverse spacial dimensions and one axial temporal dimension which reflect the whole structure of nonlinear response including the interplay between Kerr and plasma-induced effects. The resolutions of spatial and temporal dimension are about a few micrometer and several femtosecond.udThe regime of light-matter interaction investigated here is between the strong and perturbative, where the pulse intensity can induce nonlinear refractive index change and partial ionization of dielectric medium. Obviously, such regimes are difficult to study both experimentally and theoretically.udMESA is a quantum based model, but it retains the same computation complexity as conventional light-matter interaction model. MESA contains the response from both bound and continuum states in a single self-consistent "Package".udSo, it is fair to say that this experiment-theory comparison sets a new standard for nonlinear light-matter interaction models and their verification in the area of extreme nonlinear optics.
机译:本文证明了亚稳态电子状态方法(MESA)在超短激光传播中非线性光学响应的​​模型和应用,并通过与实验数据的广泛比较验证了MESA的准确性。 udMESA是从量子力学发展而来,用于描述非线性非共振光学响应以及气态介质中的强场电离。传统的光物质相互作用模型基于分段方法,其中克尔效应和多光子电离被视为独立的非线性响应。相比之下,MESA是自洽的,因为来自自由电子和结合电子的响应在微观上是联系在一起的。它也可以很容易地与单向脉冲传播方程式(UPPE)耦合,以进行大规模的实验仿真。 ud这项工作测试了MESA模型在气态介质中超短脉冲传播的非线性相位瞬变模拟中的实现。已经通过单次超连续谱干涉法测量了相位瞬变。此技术可以实现高时间分辨率(10 $ fs $)和空间分辨率(5 $ mu m $)。我们在仿真和实验之间的比较给出了MESA模型的定量测试,包括绝热后的修正。 ud这是首次对适用于现代非线性光学实验的大规模数值模拟的理论进行这种比较。从多个方面来看,我们是首创。特别是,比较 udLarge数据量。我们比较了氩和氮中不同泵浦强度引起的非线性响应数据。数据集是三个维度,包括两个横向空间维度和一个轴向时间维度,它们反映了非线性响应的整个结构,包括Kerr和等离子体诱导的效应之间的相互作用。空间和时间维度的分辨率约为几微米和几飞秒。 ud这里研究的光-物质相互作用机制介于强和微扰之间,其中脉冲强度会引起非线性折射率变化和电介质部分电离。显然,这样的机制很难在实验和理论上进行研究。 udMESA是基于量子的模型,但是它保留了与常规光物质相互作用模型相同的计算复杂性。 MESA在单个自洽的“包装”中包含了来自束缚态和连续态的响应。 ud因此,可以说这个实验理论比较为非线性光物质相互作用模型及其验证提供了新的标准。极端非线性光学领域。

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    Xia Yi;

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  • 年度 2017
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