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Time Domain Measurement of Electron Spin Relaxation at High Fields and Dynamic Nuclear Polarization at Sub-Millimeter Wavelengths

机译:电子旋转在高领域的时域测量和子毫米波长的动态核偏振

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We describe a 395 GHz pulsed electron paramagnetic resonance (EPR) setup, and initial results of relaxation measurements and cw EPR at these frequencies in samples used for liquid-and solid-state nuclear magnetic resonance enhanced by dynamic nuclear polarization (DNP). Depending on the amount of spin - orbit coupling, the spin lattice relaxation becomes significantly faster at higher fields and frequencies, which has consequences for some DNP applications at high fields and frequencies. We will discuss the requirements for (sub)millimeter-wave sources and components for DNP and pulsed EPR at even higher frequencies and fields, as even higher magnetic fields will become available in the near future.
机译:我们描述了一个395GHz脉冲电子顺磁共振(EPR)设置,以及通过动态核极化(DNP)增强了用于液态核磁共振的样品中的弛豫测量和CW EPR的初始结果。根据旋转轨道耦合的量,在较高领域和频率下,旋转晶格弛豫变得明显更快,这对高领域和频率的一些DNP应用具有后果。我们将讨论(Sub)毫米波源和DNP和脉冲EPR的组件在甚至更高的频率和场上的要求,因为即使在不久的将来也可用的甚至更高的磁场。

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