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首页> 外文期刊>Physical Review, B. Condensed Matter >Infrared spectroscopic study of CuO: Signatures of strong spin-phonon interaction and structural distortion - art. no. 094303
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Infrared spectroscopic study of CuO: Signatures of strong spin-phonon interaction and structural distortion - art. no. 094303

机译:CuO的红外光谱研究:强自旋声子相互作用和结构变形的特征-艺术。没有。 094303

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摘要

Optical properties of single-crystal monoclinic CuO in the range 70-6000 cm(-1) were studied at temperatures from 7 to 300 K. Normal reflection spectra were obtained from the (001) and (010) crystal faces thus giving separate data for the A(u) and B-u phonon modes excited in the purely transverse way (TO modes). Mode parameters, including polarizations of the B-u modes not determined by the crystal symmetry, were extracted by the dispersion analysis of reflectivity curves as a function of temperature. Spectra of all the components of the optical conductivity tensor were obtained using the Kramers-Kronig method recently extended to the case of the low-symmetry crystals. The number of strong phonon modes is in agreement with the factor-group analysis for the crystal structure currently accepted for the CuO. However, several "extra" modes of minor intensity are detected; some of them are observed in the whole studied temperature range, while existence of others becomes evident at low temperatures. Comparison of frequencies of ''extra'' modes with the available phonon dispersion curves points to possible ''diagonal'` doubling of the unit cell {a,b,c}-->{a+c,b,a-c} and formation of the superlattice. The previously reported softening of the A(u)(3) mode (similar to 400 cm(-1)) with cooling at T-N is found to be similar to 10% for the TO mode. The mode is very broad at high temperatures and strongly narrows in the antiferromagnetic phase. We attribute this effect to strong resonance coupling of this mode to optical or acoustic bimagnons and reconstruction of the magnetic excitations spectrum at the Neel point. A significant anisotropy of epsilon (infinity) is observed: it was found to be 5.9 along the b axis, 6.2 alone, the [101] chains, and 7.8 along the [10 (1) over bar] chains. The transverse effective charge e(T)* is more or less isotropic; its value is about two electrons. [References: 39]
机译:在7至300 K的温度下研究了单晶斜晶CuO在70-6000 cm(-1)范围内的光学性质。从(001)和(010)晶面获得了正反射光谱,从而提供了单独的数据。 A(u)和Bu声子模式以纯横向方式激发(TO模式)。通过反射率曲线随温度变化的色散分析,提取出模式参数,包括未由晶体对称性确定的B-u模式的极化。使用最近扩展到低对称晶体的情况的Kramers-Kronig方法获得了光导张量的所有分量的光谱。强声子模式的数量与当前接受CuO的晶体结构的因子组分析一致。但是,检测到了几种强度较小的“额外”模式;其中一些是在整个研究温度范围内观察到的,而其他一些则在低温下明显存在。比较“额外”模式的频率和可用的声子色散曲线,表明晶胞{a,b,c}-> {a + c,b,ac}和形成的可能“对角”加倍超晶格。发现先前报道的在T-N冷却下A(u)(3)模式(类似于400 cm(-1))的软化对于TO模式类似于10%。该模式在高温下非常宽,在反铁磁相中极窄。我们将此效应归因于此模式与光学或声学双磁子的强共振耦合,以及Neel点处磁激发光谱的重建。观察到明显的各向异性(无穷大):沿b轴为5.9,仅[101]链为6.2,沿[10(1)跨条]链为7.8。横向有效电荷e(T)*大致各向同性;它的值大约是两个电子。 [参考:39]

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