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Suppression of ghost distances in multiple-spin double electron-electron resonance

机译:多旋双电子-电子共振中的幻影距离的抑制

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Distance measurements by pulse electron paramagnetic resonance techniques are increasingly applied to multiple-spin systems. In the double electron-electron resonance experiment, more than two dipolar coupled spins manifest in an increased total modulation depth and in sum and difference dipolar frequency contributions that give rise to additional peaks appearing in the distance distribution, which do not correspond to the real interspin distances of the system and are hence referred to as ghost contributions. These ghost contributions may be so prominent that they might be mistaken for real distance peaks or that real distance peaks shift their position or disappear. We present a simple approximate procedure to suppress ghost distances to a great extent by manipulating the experimentally obtained form factor during data analysis by a simple power scaling with a scaling exponent ζ_N = 1 /(1 -N), with N being the number of coupled spins in the system. This approach requires neither further experimental effort nor exact knowledge about labelling and inversion efficiency. This should enable routine application to biological systems. The approach is validated on simulated test cases for up to five spins and applied to synthetic model samples. The suppression of ghost distances with the presented approach works best for symmetric geometries and rigid molecules which, at the same time, are the cases where ghost contributions are most disturbing. The distance distributions obtained by power scaling are consistent with distributions that were obtained with previously obtained alternative approaches and agree, in some cases, strikingly well with the expectations for the true interspin distance distributions.
机译:通过脉冲电子顺磁共振技术进行的距离测量越来越多地应用于多旋转系统。在双电子-电子共振实验中,两个以上的偶极耦合自旋表现为总调制深度增加,并且总和和不同的偶极频率贡献导致距离分布中出现额外的峰值,这些峰值不对应于真实的自旋间系统的距离,因此称为虚影贡献。这些重影贡献可能如此突出,以至于它们可能被误认为是真实距离峰,或者真实距离峰会改变其位置或消失。我们提出了一种简单的近似程序,可以通过在数据分析过程中通过使用缩放指数ζ_N= 1 /(1-N)的简单幂级缩放来操纵实验获得的形状因数,从而在很大程度上抑制重影距离,其中N是耦合数在系统中旋转。这种方法既不需要进一步的实验工作,也不需要有关标记和转化效率的确切知识。这应该可以将其常规应用到生物系统中。该方法已在多达五个旋转的模拟测试用例上得到验证,并应用于合成模型样本。使用提出的方法抑制重影距离最适用于对称几何形状和刚性分子,同时,这也是重影影响最大的情况。通过功率缩放获得的距离分布与通过以前获得的替代方法获得的分布一致,并且在某些情况下,与真实的自旋间距离分布的期望非常吻合。

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