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首页> 外文期刊>Physics Letters, A >Macroscopic quantum coherence in a single molecular magnet and Kondo effect of electron transport
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Macroscopic quantum coherence in a single molecular magnet and Kondo effect of electron transport

机译:单分子磁体中的宏观量子相干和电子传输的近藤效应

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摘要

We report a Kondo-effect study of electron transport through a quantum dot with embedded biaxial single-molecule magnet based on slave boson mean-field theory and non-equilibrium Green-function technique. It is found the macroscopic quantum coherence of molecule-magnet results in the Kondo peak split of differential conductance due to interaction between electron and molecular magnet. It is also demonstrated that both the peak height and position can be controlled by the sweeping magnetic field and polarization of ferromagnetic electrodes. The characteristic peak split may be used to identify the macroscopic quantum coherence and develop molecule devices.
机译:我们报告了基于奴隶玻色子平均场理论和非平衡格林函数技术通过嵌入双轴单分子磁体的量子点进行电子传输的近藤效应研究。发现分子磁体的宏观量子相干性由于电子与分子磁体之间的相互作用而导致微分电导的近藤峰分裂。还证明了峰高和峰高都可以通过扫描磁场和铁磁电极的极化来控制。特征峰分裂可用于识别宏观量子相干性并开发分子装置。

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