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首页> 外文期刊>Physics of the solid state >Optical properties of new organic conductors based on the BEDT-TSeF molecule (the kappa-(BETS)(4)Hg2.84Br8 superconductor and kappa-(BETS)(4)Hg3Cl8 metal) in the range 300-15 K
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Optical properties of new organic conductors based on the BEDT-TSeF molecule (the kappa-(BETS)(4)Hg2.84Br8 superconductor and kappa-(BETS)(4)Hg3Cl8 metal) in the range 300-15 K

机译:基于BEDT-TSeF分子(kappa-(BETS)(4)Hg2.84Br8超导体和kappa-(BETS)(4)Hg3Cl8金属)的新型有机导体的光学性质在300-15 K之间

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摘要

Polarized reflectance and optical conductivity spectra of single crystals of two new isostructural organic conductors based on the BEDT-TSeF molecule, namely, the kappa-(BETS)(4)Hg2.84Br8 superconductor (T-c=2 K) and the kappa-(BETS)(4)Hg3Cl8 metal, which undergoes a smooth transition to the dielectric state near 35 K, have been obtained in the spectral region 700-6500 cm(-1) at temperatures of 300-15 K. At 300 K, the spectra of both compounds are nearly identical and differ from the Drude spectrum characteristic of metals. The nature of the observed difference is discussed, and the spectra are described in terms of a cluster approach with inclusion of electron-electron correlations in the Hubbard approximation combined with the Drude model. The parameters of the theory were determined, including the electron transfer integrals between molecules in a cluster. The spectra in the conducting plane of the crystals were found to be essentially anisotropic, which should be assigned to specific features of in-plane interaction between molecules. The spectra of the superconductor and the metal become increasingly different as the temperature is lowered. The spectra of the metal obtained for T<150 K exhibit splitting of the broad electronic maximum in the mid-IR region into two bands, which is accompanied by a splitting of a vibronic feature deriving from electron interaction with intramolecular BETS vibrations of nu(3)(A(g)) symmetry. No such splitting is observed in the superconductor spectra with decreasing temperature. (C) 2004 MAIK "Nauka/Interperiodica".
机译:基于BEDT-TSeF分子的两种新的同构有机导体的单晶的偏振反射率和光导谱,即kappa-(BETS)(4)Hg2.84Br8超导体(Tc = 2 K)和kappa-(BETS) )(4)Hg3Cl8金属在温度为300-15 K的光谱区域700-6500 cm(-1)中获得了在35 K附近经历平滑过渡到介电态的过程。在300 K时,两种化合物几乎相同,并且不同于金属的Drude光谱特征。讨论了观察到的差异的性质,并根据簇方法对光谱进行了描述,并在结合了Drude模型的Hubbard近似中包含了电子-电子相关性。确定了该理论的参数,包括簇中分子之间的电子转移积分。发现晶体的导电平面中的光谱基本上是各向异性的,应将其分配给分子之间的平面内相互作用的特定特征。随着温度降低,超导体和金属的光谱变得越来越不同。在T <150 K时获得的金属光谱显示出中红外区的宽电子最大值分裂为两个谱带,伴随着电子相互作用与nu(3)的分子内BETS振动而产生的振动特征分裂。 (A(g))对称性。随着温度降低,在超导体光谱中未观察到这种分裂。 (C)2004 MAIK“ Nauka / Interperiodica”。

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