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首页> 外文期刊>IEEE Transactions on Magnetics >Specific Features of ${hbox{Tb}}{^{3+}}$ Magnetooptics in Terbium Iron and Terbium Gallium Garnets (${hbox{Tb}}_{3}{hbox{Fe}}_{5}{{hbox{O}}_{12}}$ and ${hbox{Tb}}_{3}{rm Ga}_{5}{{hbox{O}}_{12}}$ )
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Specific Features of ${hbox{Tb}}{^{3+}}$ Magnetooptics in Terbium Iron and Terbium Gallium Garnets (${hbox{Tb}}_{3}{hbox{Fe}}_{5}{{hbox{O}}_{12}}$ and ${hbox{Tb}}_{3}{rm Ga}_{5}{{hbox{O}}_{12}}$ )

机译:{铁和Ter镓石榴石中的$ {hbox {Tb}} {^ {3 +}} $磁光特性($ {hbox {Tb}} _ {3} {hbox {Fe}} _ {5} {{ hbox {O}} _ {12}} $和$ {hbox {Tb}} _ {3} {rm Ga} _ {5} {{hbox {O}} _ {12}} $)

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摘要

We reported magnetooptical properties of ${hbox{Tb}}{^{3 + }}$ in single crystals of ${hbox{Tb}}_{3}{hbox{Fe}}_{5}{{hbox{O}}_{12}}$ and ${hbox{Tb}}_{3}{hbox{Ga}}_{5}{{hbox{O}}_{12}}$ for ion occupying sites of ${rm D}_{2}$ symmetry in the garnets structure. It is shown that in the employed Voigt geometry the magnetic linear birefringence and the dichroism reach values $10{^{hbox{-}4}}$ , and have a strong dependence on the wavelength and a strong anisotropy. The absorption spectra were obtained at temperatures of 30 K, 82 K, 100 K using magnetic field up to 25 kOe applied parallel and perpendicular to the electric vector $E$ linearly polarized light on the $^7{{hbox{F}}_6}-^{7}{{hbox{F}}_0}$ and $^7{{hbox{F}}_6}-^{7}{{hbox{F}}_1}$ optical transitions region. The aim of this research was revealing of a role of contributions of exchange interaction and a crystal field in splitting of energy levels of the basic condition $^7{hbox{F}}_{6}$ ion ${hbox{Tb}}{^{3 + }}$ multiplet in Tb ferrite-garnet by studying of character of spectra of magnetic linear dichroism (MLD) paramagnetic and ferrimagnetic crystals placed in an external magnetic field. Moreover, the assumption about nonreciprocity of magnetic linear birefringence (MLB) spectra and dichroism with the change of th- relative orientation of the magnetization vector $I$ and the light wave vector has been experimentally confirmed. This effect may be used as a base for the design of the different transducers, for example, magnetooptical optical channels commutator.
机译:我们报道了$ {hbox {Tb}} _ {3} {hbox {Fe}} __ 5(5){{hbox {O}}的单晶中$ {hbox {Tb}} {^ {3 +}} $的磁光特性} $ _ {12}}和$ {hbox {Tb}} _ {3} {hbox {Ga}} _ {5} {{hbox {O}} _ {12}} $石榴石结构中的rm D} _ {2} $对称。结果表明,在所采用的Voigt几何形状中,磁性线性双折射和二向色性达到$ 10 {^ {hbox {-} 4}} $的值,并且对波长的依赖性强且各向异性强。吸收光谱是在30 K,82 K,100 K的温度下使用在垂直于电矢量$ E $的线性极化光上在$ ^ 7 {{hbox {F}} _ 6上平行和垂直施加的高达25 kOe的磁场下获得的}-^ {7} {{hbox {F}} _ 0} $和$ ^ 7 {{hbox {F}} _ 6}-^ {7} {{hbox {F}} _ 1} $光学过渡区域。这项研究的目的是揭示交换相互作用和晶体场在基本条件$ ^ 7 {hbox {F}} _ {6} $ ion $ {hbox {Tb}}的能级划分中的作用。通过研究放置在外部磁场中的磁性线性二向色(MLD)顺磁性和亚铁磁性晶体的光谱特征,使Tb铁氧体石榴石中的{^ {3 +}} $多重态。而且,已经通过实验证实了关于磁线性双折射(MLB)谱和二向色性随磁化矢量$ I $和光波矢量的th相对取向的变化的不可逆性的假设。该效果可用作不同换能器(例如磁光光学通道换向器)设计的基础。

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