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Relating PAC damping to EFG fluctuation rates through the PAC relaxation peak Dynamic N-state symmetric models

机译:通过PAC弛豫峰将PAC阻尼与EFG波动率联系起来动态N态对称模型

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摘要

A perturbed angular correlation (PAC) experiment that measures dynamic damping also needs information about the fundamental quadrupole frequency to relate the damping as a function of temperature to the EFG fluctuation rate. When the experiment is unable to access slow electric field gradient (EFG) fluctuations that show the fundamental quadrupole frequency directly, one needs additional information to determine the hyperfine field parameters and thereby the connection between observed damping and EFG fluctuation rates. One way to solve this problem is to estimate the hyperfine parameters from the fluctuation rate for maximum damping (i.e. at the relaxation peak) or from the rate of maximum damping. This work relates both the maximum damping rate and the fluctuation rate at the relaxation peak to EFG magnitudes (or quadrupole frequencies) for five dynamic N-state symmetric models of fluctuating EFGs.
机译:测量动态阻尼的扰动角度相关(PAC)实验还需要有关基本四极杆频率的信息,以将阻尼随温度的变化与EFG波动率相关联。当实验无法直接显示基本四极子频率的慢电场梯度(EFG)波动时,需要其他信息来确定超精细场参数,从而确定观测到的阻尼与EFG波动率之间的联系。解决该问题的一种方法是根据最大阻尼的波动率(即在弛豫峰处)或最大阻尼率估算超精细参数。对于五个动态的EFG动态N态对称模型,这项工作将最大阻尼率和弛豫峰处的波动率与EFG幅度(或四极频率)相关联。

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