论文标题

通过灾难理论对光致变色晶体形态变化的数学建模

Mathematical modeling of morphological changes in photochromic crystals by catastrophe theory

论文作者

Suzui, Hirotsugu, Uchiyama, Kazuharu, Uchida, Kingo, Horisaki, Ryoichi, Hori, Hirokazu, Naruse, Makoto

论文摘要

众所周知,光色素二透析酯在用紫外线(UV)和可见光的照射下表现出可逆的光异构化。除了光照射时具有可逆的光学特性外,文献中还报道了多种不连续的形态变化,例如突然的晶体弯曲,破裂和相照片效应,这些效应仅由紫外线和可见光的光照射引起。这些形态学现象与不连续性是由纳米级光异构化引起的微尺度变化,并导致将重要功能作为光学设备实现。但是,这些现象背后的理论模型尚不清楚。在本文中,我们构建了一个数学模型,该模型可以通过使用六个基本灾难中可以描述现象中的不连续性的吞咽灾难(一种高阶灾难(一种高阶灾难)来处理统一模型中的不同现象。通过在模型中引入双曲线工作曲线,表示光致变色晶体的内在特性。诱导的形态发生(例如弯曲,破裂和照片)是由提出的灾难模型系统地分类的,这甚至暗示了晶体的未开发工作条件并解释已知现象。提出的基于灾难理论的建模为理解和发现光致变色晶体中多功能形态发生的基础。此外,提出的方法为理解和发现光致变色晶体和相似系统的各种形态变化提供了基础。

Photochromic diarylethene is known to exhibit reversible photoisomerization under irradiation with ultraviolet (UV) and visible light. Besides reversible optical properties upon light irradiation, a variety of discontinuous morphological changes are reported in the literature, such as sudden crystal bending, cracking, and photosalient effects, which are caused simply by UV and visible light irradiation. These morphological phenomena with discontinuities are micro-scale changes caused by photoisomerization at the nanoscale and lead to the realization of important functions as optical devices. However, the theoretical models behind these phenomena are not well understood. In this paper, we construct a mathematical model that can treat diverse phenomena in a unified model by using swallow-tail catastrophe, a higher-order catastrophe than cusp catastrophe, from the seven elementary catastrophes that can describe discontinuities in the phenomena. By introducing the hyperbolic operating curves in the model, intrinsic properties of the photochromic crystals are represented. The induced morphogenesis, such as bending, cracking, and photosalient, are systematically classified by the proposed catastrophe model, which even implies unexplored operating conditions of the crystals and explains known phenomena. The proposed catastrophe-theory-based modeling provides a foundation for understanding and discovering the versatile morphogenesis in photochromic crystals. Furthermore, the proposed approach provides a basis for understanding and discovering various morphological changes in photochromic crystals and similar systems.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源