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一个 200GHz 动态核极化光谱仪。

A 200 GHz dynamic nuclear polarization spectrometer.

机构信息

Department of Physics, University of California, Santa Barbara, USA.

出版信息

Phys Chem Chem Phys. 2010 Jun 14;12(22):5920-6. doi: 10.1039/c002290j. Epub 2010 May 12.

Abstract

We present our experimental setup for both dynamic nuclear polarization (DNP) and electron paramagnetic resonance (EPR) detection at 7 T using a quasi-optical bridge for propagation of the 200 GHz beam and our initial results obtained at 4 K. Our quasi-optical bridge allows the polarization of the microwave beam to be changed from linear to circular. Only the handedness of circular polarization in the direction of the Larmor precession is absorbed by the electron spins, so a gain in effective microwave power of two is expected for circular vs. linear polarization. Our results show an increase in DNP signal enhancement of 28% when using circularly vs. linearly polarized radiation. We measured a maximum signal enhancement of 65 times that of thermal polarization for a (13)C labeled urea sample corresponding to 3% nuclear spin polarization. Since the time constant for nuclear spin polarization buildup during microwave irradiation is 10 times faster than the (13)C nuclear spin T(1), the actual gain in detection sensitivity with DNP is much greater.

摘要

我们展示了我们的实验设置,用于在 7 T 下进行动态核极化 (DNP) 和电子顺磁共振 (EPR) 检测,使用准光学桥来传播 200 GHz 的光束,并展示了我们在 4 K 下获得的初始结果。我们的准光学桥允许微波束的极化从线性变为圆形。只有在拉莫尔进动方向上的圆偏振的手性被电子自旋吸收,因此与线性极化相比,圆极化预计会有两倍的有效微波功率增益。我们的结果表明,当使用圆偏振辐射时,DNP 信号增强了 28%。对于一个标记有 (13)C 的尿素样品,我们测量到的最大信号增强是热极化的 65 倍,对应于 3%的核自旋极化。由于在微波辐照期间核自旋极化建立的时间常数比 (13)C 核自旋 T(1) 快 10 倍,因此 DNP 的实际检测灵敏度增益要大得多。

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