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Characterization of a low-pressure high-capacity ~(129)Xe flow-through polarizer

机译:低压大容量〜(129)Xe流通型偏振器的特性

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We describe a low-pressure flow-through apparatus for generating hyperpolarized ~(129)Xe and report its performance by examining both the output ~(179)Xe polarization P_(Xe) by NMR and the in situ Rb polarization profile by optically detected electron paramagnetic resonance. The polarizer is based on a previously presented design employing a long optical pumping cell. lean Xe mixture at low pressure, Rb presaturation, and counterflow of gas with respect to the direction of light propagation. The numerical model to which we compare the polarizer's performance includes the temperature dependence of the Rb-~(129)Xe spin-exchange rate, which has not previously been treated. The qualitative trends in the data mostly follow those in the model, although the model predicts P_(Xe) to be up to a factor of two higher than observed. This discrepancy cannot be attributed to low Rb polarization: the model and the optically detected electron paramagnetic resonance data (acquired at six points along the length of the heated portion of the optical pumping cell) are in reasonable agreement and show typical values of 85%-95%, although measurements also reveal an anomalous region of depressed Rb polarization near the middle of the cell. The highest output ~(129)Xepolarization P_(Xe)=84± 16%, was recorded using ≈60 W of frequency-narrowed laser light at a Xe partial pressure (referenced to 20℃) of 1.1 ± 0.2 mbar, flowing at 1 sccm of Xe; typical values were P_(Xe)≈20% flowing at 10 sccm of Xe with≈30 W of laser light.
机译:我们描述了一种用于产生超极化〜(129)Xe的低压流通设备,并通过NMR检查输出〜(179)Xe极化P_(Xe)和通过光学检测电子的原位Rb极化曲线来报告其性能。顺磁共振。偏振器基于先前提出的采用长光泵浦单元的设计。低压下稀的Xe混合物,Rb预饱和和气体相对于光传播方向的逆流。我们用来比较偏振器性能的数值模型包括Rb-〜(129)Xe自旋交换速率的温度依赖性,这在以前没有得到处理。尽管模型预测P_(Xe)比观察到的数据高两倍,但数据中的定性趋势大多遵循模型中的趋势。这种差异不能归因于低Rb极化:模型和光学检测到的电子顺磁共振数据(沿光学抽运单元加热部分的长度在六个点处获取)是合理的,并且显示的典型值为85%- 95%,尽管测量结果还显示了靠近细胞中间的Rb极化降低的异常区域。使用≈60W的窄频激光在1.1±0.2 mbar的Xe分压(参考20℃)下记录的最高输出〜(129)Xepolarization P_(Xe)= 84±16%。 Xe的sccm;典型值为P_(Xe)≈20%,在Xe的10 sccm处流经≈30W的激光。

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