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首页> 外文期刊>ACS nano >Spin dynamics and relaxation in graphene nanoribbons: Electron spin resonance probing
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Spin dynamics and relaxation in graphene nanoribbons: Electron spin resonance probing

机译:石墨烯纳米带的自旋动力学和弛豫:电子自旋共振探测

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摘要

Here we report the results of a multifrequency (~9, 20, 34, 239.2, and 336 GHz) variable-temperature continuous wave (cw) and X-band (~9 GHz) pulse electron spin resonance (ESR) measurement performed at cryogenic temperatures on potassium split graphene nanoribbons (GNRs). Important experimental findings include the following: (a) The multifrequency cw ESR data infer the presence of only carbon-related paramagnetic nonbonding states, at any measured temperature, with the g value independent of microwave frequency and temperature. (b) A linear broadening of the ESR signal as a function of microwave frequency is noticed. The observed linear frequency dependence of ESR signal width points to a distribution of g factors causing the non-Lorentzian line shape, and the g broadening contribution is found to be very small. (c) The ESR process is found to be characterized by slow and fast components, whose temperature dependences could be well described by a tunneling level state model. This work not only could help in advancing the present fundamental understanding on the edge spin (or magnetic)-based properties of GNRs but also pave the way to GNR-based spin devices.
机译:在这里,我们报告了在低温下进行的多频(〜9、20、34、239.2和336 GHz)可变温度连续波(cw)和X波段(〜9 GHz)脉冲电子自旋共振(ESR)测量的结果钾裂解石墨烯纳米带(GNR)的温度。重要的实验发现包括:(a)多频CW ESR数据推断在任何测量温度下仅存在与碳有关的顺磁非键态,其g值与微波频率和温度无关。 (b)注意到,ESR信号线性展宽是微波频率的函数。观察到的ESR信号宽度的线性频率依赖性指向导致非洛伦兹线形状的g因子分布,并且发现g展宽贡献很小。 (c)ESR过程的特征是速度快和慢,其温度依赖性可以通过隧穿能级模型很好地描述。这项工作不仅有助于增进对GNR的基于边缘自旋(或磁性)特性的当前基本理解,而且还为基于GNR的自旋器件铺平了道路。

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