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一种揭示球晶中双折射晶体扭曲的光学测试。

An optical test to unveil twisting of birefringent crystals in spherulites.

作者信息

Raimo Maria

机构信息

Consiglio Nazionale delle Ricerche, Istituto per i Polimeri, Compositi e Biomateriali, Via Campi Flegrei 34, 80078 Pozzuoli, Naples, Italy.

出版信息

R Soc Open Sci. 2019 Jan 16;6(1):181215. doi: 10.1098/rsos.181215. eCollection 2019 Jan.

Abstract

Helical conformations and structures are frequently observed in materials. The presence of helices at points of the unit cell of a crystal, on a larger size scale in the crystalline lattice or even in the microscopic structure of crystals, affects the chemico-physical properties of a solid and, hence, also interactions with light. Here, attention has been drawn to the geometrical properties of helices produced by a hypothetical torque of a transparent crystal, and optical properties of twisted crystals easily observed by a polarizing microscope have been discussed. Radially grown spherulites are obtained by most substances crystallized from melt. The circular arrangement of elongated crystals reflects the optical behaviour of each crystal and, because of the larger dimensions of spherulites, allows investigations otherwise hardly feasible on separate crystals. According to the torsional analysis of elongated bodies and the birefringence theory, information on the existence of helically shaped crystals can be deduced, as hereinafter explained, from the microscopic appearance and birefringence pattern of spherulites. Indeed, twisting decreases the birefringence throughout an elongated crystal and, therefore, also the birefringence of spherulites formed by twisted radial crystals is reduced.

摘要

在材料中经常观察到螺旋构象和结构。晶体晶胞的某些点上、晶格中更大尺寸尺度上甚至晶体的微观结构中存在螺旋,会影响固体的化学物理性质,进而也会影响与光的相互作用。在此,人们关注了由透明晶体的假想扭矩产生的螺旋的几何性质,并讨论了用偏光显微镜容易观察到的扭曲晶体的光学性质。大多数从熔体中结晶的物质会形成径向生长的球晶。细长晶体的圆形排列反映了每个晶体的光学行为,并且由于球晶尺寸较大,使得对单独晶体难以进行的研究成为可能。根据细长物体的扭转分析和双折射理论,如下所述,可以从球晶的微观外观和双折射图案推断出螺旋状晶体存在的信息。实际上,扭转会降低整个细长晶体的双折射,因此,由扭曲的径向晶体形成的球晶的双折射也会降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/831d/6366204/681630fa34a6/rsos181215-g1.jpg

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