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IR-dichroism of magnetic tapes: measurements with polarized IR-light

机译:磁带的红外二色性:使用偏振红外光进行测量

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摘要

In measuring magnetic tapes in a transmission mode with linearly polarized IR light, it was observed that many magnetic layers show an IR dichroism in the wavelength region of 2.5 mu m to 25 mu m. The IR dichroism is mainly caused by the orientation of the magnetic particles in the tape. The degree of polarization rises with increasing thickness and increasing orientation factor of the magnetic layers. The IR dichroism (quantified as the degree of polarization) is pronounced in CrO/sub 2/ tapes, whereas tapes with Co-modified gamma -Fe/sub 2/O/sub 3/ show far less IR dichroism. By variation of the layer thickness and the orientation factor, calibration relations are obtained. With these calibration relations, the IR dichroism of magnetic tape is described semiempirically. It is concluded that detailed knowledge of the IR dichroism is the basic requirement for obtaining IR absorption spectra of magnetic layers without obstructions caused by interference patterns.
机译:在以线性偏振IR光以透射模式测量磁带时,观察到许多磁性层在2.5μm至25μm的波长范围内显示出IR二向色性。红外二色性主要是由磁带中磁性颗粒的取向引起的。极化程度随着磁性层的厚度增加和取向因子增加而增加。 CrO / sub 2 /胶带具有明显的IR二向色性(量化为偏振度),而具有Co-修饰的γ-Fe / sub 2 / O / sub 3 /的胶带显示的IR二向色性要小得多。通过改变层厚度和取向因子,获得校准关系。利用这些校准关系,半经验地描述了磁带的红外二向色性。结论是,对红外二向色性的详细了解是获得磁性层的红外吸收光谱而无干涉图样所造成的障碍的基本要求。

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