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Coherent pump pulses in Double Electron Electron Resonance Spectroscopy

机译:双电子共振光谱中的相干泵浦脉冲

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摘要

The recent introduction of shaped pulses to Double Electron Electron Resonance (DEER) spectroscopy has led to significant enhancements in sensitivity through increased excitation bandwidths and improved control over spin dynamics. The application of DEER has so far relied on the presence of an incoherent pump channel to average out most undesired coherent effects of the pump pulse(s) on the observer spins. However, in fully coherent EPR spectrometers that are increasingly used to generate shaped pulses, the presence of coherent pump pulses means that these effects need to be explicitly considered. In this paper, we examine the effects of coherent rectangular and sech/tanh pump pulses in DEER experiments with up to three pump pulses. We show that, even in the absence of significant overlap of the observer and pump pulse excitation bandwidths, coherence transfer pathways involving both types of pulses generate spin echoes of considerable intensity. These echoes introduce artefacts, which, if not identified and removed, can easily lead to misinterpretation. We demonstrate that the observed echoes can be quantitatively modelled using a simple spin quantum dynamics approach that includes instrumental transfer functions. Based on an analysis of the echo crossing artefacts, we propose efficient phase cycling schemes for their suppression. This enables the use of advanced DEER experiments, characterized by high sensitivity and increased accuracy for long-distance measurements, on novel fully coherent EPR spectrometers.
机译:最近在双电子电子共振(DEER)光谱学中引入了成形脉冲,通过增加激励带宽和改进对自旋动力学的控制,可以显着提高灵敏度。迄今为止,DEER的应用依靠不相干的泵浦通道的存在来平均出泵浦脉冲对观察者自旋的最不希望的相干效应。但是,在越来越多地用于生成整形脉冲的全相干EPR光谱仪中,相干泵浦脉冲的存在意味着需要明确考虑这些影响。在本文中,我们在多达三个泵浦脉冲的DEER实验中研究了相干矩形和sech / tanh泵浦脉冲的影响。我们表明,即使在观察者和泵浦脉冲激发带宽没有明显重叠的情况下,涉及两种脉冲的相干传递路径也会产生相当大的自旋回波。这些回声会引入伪影,如果不识别和消除伪影,很容易导致误解。我们证明可以使用包括仪器传递函数的简单自旋量子动力学方法对观察到的回波进行定量建模。在分析回声交叉伪像的基础上,我们提出了有效的相位循环方案对其进行抑制。这样就可以在新型全相干EPR光谱仪上使用先进的DEER实验,其特点是高灵敏度和提高的长距离测量精度。

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  • 作者

    Claudia E. Tait; Stefan Stoll;

  • 作者单位
  • 年(卷),期 -1(18),27
  • 年度 -1
  • 页码 18470–18485
  • 总页数 34
  • 原文格式 PDF
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