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Electrical Excitation Decay Time in Chains of Nanoscale Non-Point Dipoles

机译:纳米级非点偶极链中的电激励衰减时间

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摘要

On the basis of a previously developed model of disperse systems containing non-point dipole particles self-assembled into chains inside a liquid substrate, the decay time of electrical excitations induced in dipoles by an external field is investigated. It was shown that when the external field is completely turned off (from 10−6 V / m to 106 V / m levels) at biologically significant low frequencies (for example, 13 Hz), the decay time of the excitations of nanoscale dipoles nonlinearly depends on the chain length. It was found that the decay time of excitations increases sharply (by four to five orders of magnitude), with an increase in the chain length more than 19–20 dipoles.
机译:基于先前开发的含有非点偶极颗粒的分散系统模型,其自组装成液体基板内的链条中,研究了外部场在偶极子中诱导的电激发的衰减时间。结果表明,当外部场在生物显着的低频(例如,13Hz)处完全关闭(从10-6 v / m至106 v / m水平)时,纳米级浸润的激励的衰减时间是非线性的取决于链长度。发现激发的衰变时间急剧增加(幅度为4至五个级),链条长度增加超过19-20个偶联。

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