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Spin Thermometry: A Straightforward Measure of Millikelvin Deuterium Spin Temperatures Achieved by Dynamic Nuclear Polarization

机译:旋转温度:通过动态核极化实现的Millikelvin氘旋转温度的直接测量

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摘要

Dynamic nuclear polarization of samples at low temperatures, typically between 1.2 and 4.2 K, allows one to achieve spin temperatures of as low as 2 mK so that for many nuclear isotopes the high-temperature approximation is violated for the nuclear Zeeman interaction. This leads to characteristic asymmetries in powder spectra. We show that the line shapes due to the quadrupolar couplings of deuterium spins present in virtually all solvents used for such experiments (DNP juice) allow the quick yet accurate determination of the deuterium spin temperature or, equivalently, the deuterium polarization. The observation of quadrupolar echoes excited by small flip-angle pulses allows one to monitor the build-up and decay of the positive or negative deuterium polarization.
机译:在低温下的样品的动态核偏振,通常在1.2和4.2 k之间,允许一个人实现低至2 mk的旋转温度,以便对于许多核同位素来说,核塞曼互动侵犯了高温近似。 这导致粉末光谱中的特征不对称。 我们表明,由于氘旋转的氘旋转引起的线形状在几乎所有用于这种实验(DNP汁)(DNP汁)的所有溶剂中允许快速且精确地测定氘旋转温度,或者等效地氘极化。 通过小折叠角脉冲激发的Quadrupolar回声的观察允许人们监测正面或负氘极化的积聚和衰减。

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