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首页> 外文期刊>Synthetic Metals >QUANTUM LATTICE FLUCTUATIONS IN THE GROUND STATE OF ONE-BAND MX COMPLEXES
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QUANTUM LATTICE FLUCTUATIONS IN THE GROUND STATE OF ONE-BAND MX COMPLEXES

机译:一束MX复合物基态下的量子点阵波动

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The effects of quantum lattice fluctuations on the charge density wave (CDW) of a one-dimensional one-band model for halogen-bridged mixed-valence linear chain complexes are studied by a functional integral approach. An equation for the phonon order parameter is derived within a one-loop approximation for all values of the ionic mass. We find that the dimerized CDW survives the quantum lattice fluctuations for arbitrarily small electron-lattice coupling. The result is the same as that of the Su-Schrieffer-Heeger model, although these two models are different for the interactions. The electron-phonon interactions are site-diagonal for the MX model and site-off-diagonal for the SSH model. Furthermore, in the case of finite ionic mass, the low-energy properties of the system are governed by the limit of M = 0 for a weak electron-phonon interaction, whereas they are governed by the adiabatic limit (M = infinity) for a stronger electron-phonon interaction. [References: 8]
机译:通过功能积分的方法研究了量子点波动对一维单带卤素桥键合价线性链配合物一维模型电荷密度波(CDW)的影响。对于离子质量的所有值,在单环近似中得出声子阶数参数的方程式。我们发现,二聚化的CDW能够承受任意小的电子-晶格耦合的量子晶格波动。结果与Su-Schrieffer-Heeger模型的结果相同,尽管这两个模型的交互作用不同。电子-声子相互作用对于MX模型是位点对角的,对于SSH模型是位点对角的。此外,在有限离子质量的情况下,系统的低能特性受弱电子-声子相互作用的M = 0的极限控制,而对于a的绝热极限(M =无限)控制。电子声子相互作用更强。 [参考:8]

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