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Ferrotoroidial propertiesof Non-Crystallographic Pointgroups

机译:非晶体点群的铁臭管性能

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Primary ferroic crystals are the crystals with domain states that are distinguished by properties like spontaneous magnetization, strain, or polarisation. Secondary ferroic crystals are the crystals with domain states that are distinguished by piezoelectric tensor and they are named as Ferromagnetotoroidic (eV2), Ferromagnetoelastic (aeV [V2]) crystals respectively. Here "e" denotes zero rank tensor that changes under spatial inversion, "a" denotes zero rank tensor that changes under time inversion, and "V" denotes a polar vector. Recent observations (Van Aken et al., 2007) identified the fourth type of primary ferroic crystals, a ferrotoroidic crystal with domains distinguished by a toroidial moment. The number of independent constants of quasi crystals is theoretically derived by Wenge Yang et al., (1995). He also formulated the number of independent components of any physical property tensor of quasi crystals using group representation theory. This paper accounts the effect of symmetry on some ferrotoroidial properties of quasi Crystals with 5-fold, 8-fold, 10-fold and 12-fold symmetries using group theoretical methods. Also the number of independent constants is calculated and tabulated that helps in describing the ferrotoroidial properties.
机译:主要铁晶体是具有结构域状态的晶体,其特征如自发磁化,菌株或极化等特性。二次铁晶是具有域状态的晶体,其分别由压电张量区分,分别被命名为铁磁性体(EV2),铁磁体(AEV [V2])晶体。这里“e”表示零级张量,在空间反转下变化,“a”表示在时间反转下变化的零级张量,“v”表示极性向量。最近的观察结果(Van Aken等,2007)鉴定了第四类原代晶体,一个与环形矩具有区别的结构域。准晶体的独立常数的数量由Wenge Yang等人来源地衍生。(1995)。他还使用组表示理论制定了拟晶体的任何物理性质张量的独立组分的数量。本文叙述了对称性对二倍,8倍,10倍和12倍对称的准晶体的一些配合性能的影响,使用群体理论方法。计算和制表独立常量的数量,有助于描述配合性质。

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