钴掺杂六水亚硫酸镁的圆二色性

Z. Bunzarov, I. Iliev, T. Dimov, P. Petkova, Tz. Kovachev, L. Lyutov, Y. Tzoukrovski
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摘要

新的六水亚硫酸镁(MgSO3.6H2O)非线性晶体属于罕见的C3类晶体(没有对称中心),另一个已知的代表是高碘酸钠(NaIO4)。关于六水亚硫酸镁的物理性质,目前的科学文献资料很少。目前,我们只能通过索非亚大学物理系晶体生长实验室开发的方法来生长具有显著尺寸(高达40-50毫米)的MgSO3.6H2O以及掺杂Ni, Co和Zn的单晶。最近我们已经观察到所谓的光学活性的存在。在纯MgSO3.6H2O中没有观察到圆二色性。本文首次研究了Co掺杂MgSO3.6H2O的圆二色性,在420 nm ~ 580 nm的光谱范围内出现圆二色性。圆二色性的光谱表现出良好的表达结构——在470 nm处有一个孤立的最大值,在~ 495 nm和520 nm处有两个重叠的最大值。将圆二色性光谱与MgSO3.6H2O:Co沿0001方向的吸收光谱和沿1210方向测量的线性二色性光谱进行了比较。由此可见,由于Co掺杂,圆二色性只出现在光吸收结构的光谱范围内。在相同的光谱范围内,还可以观察到MgSO3.6H2O中Co的存在所决定的线性二色性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Circular dichroism in magnesium sulfite hexahydrate doped with cobalt
The new nonlinear crystal of magnesium sulfite hexahydrate (MgSO3.6H2O) belongs to the rare crystallographic class C3 (without a symmetry centre), the other known only representative being sodium periodate (NaIO4). There are some scarce data in the scientific papers about magnesium sulfite hexahydrate's physical properties. Single crystals of significant sizes (up to 40-50 mm) of MgSO3.6H2O as well as such, doped with Ni, Co, and Zn, for the time being are grown only by our own method developed in the Laboratory for Crystal growth at the Faculty of Physics of Sofia University. Recently we have observed the supposed presence of optical activity. Circular dichroism is not observed in pure MgSO3.6H2O. The results of the first ever investigations are presented, which demonstrate the presence of circular dichroism in MgSO3.6H2O doped with Co. The circular dichroism appears in the spectral range from 420 nm to 580 nm. The spectrum of circular dichroism demonstrates a well expressed structure - an isolated maximum at 470 nm and a combination of two overlapped maxima at ~ 495 nm and 520 nm respectively. The spectrum of the circular dichroism is compared with the absorption spectrum of MgSO3.6H2O:Co, along the direction (0001) and with the linear dichroism spectrum measured in direction(1210). It is shown in this way that the circular dichroism appears only in the spectral range of the optical absorption structure due to Co dopant. In the same spectral range can be observed also the linear dichroism determined by Co presence in MgSO3.6H2O.
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