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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Spin-Polarized Hydrogen Depolarization Rates at High Hydrogen Halide Pressures: Hyperfine Depolarization via the HY-H Complex
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Spin-Polarized Hydrogen Depolarization Rates at High Hydrogen Halide Pressures: Hyperfine Depolarization via the HY-H Complex

机译:高卤化物压力下的旋转偏振氢去极化速率:通过Hy-H络合物的高浓度去极化

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摘要

We measure the magnetization quantum beats of spin-polarized hydrogen (SPH) and spin-polarized deuterium (SPD) with a pickup coil, from the UV photodissociation of HCI, HBr, and DI, in the 5-5000 mbar pressure range. The pressure-dependent depolarization rate is linear at low pressures and reaches a plateau at higher pressures. The high-pressure depolarization rate is observed to be proportional to the halogen nuclear electric quadrupole coupling constant. We also investigate how the presence of an inert gas, SF6 or N-2, affects the depolarization rate. The results are explained using a model in which depolarization occurs predominantly through an HY-H intermediate species (Y = Cl, Br, I).
机译:我们测量旋转偏振氢(SPH)和旋转偏振的氘(SPD)的磁化量子差,用拾取线圈,从HCl,HBr和Di的UV光积极,在5-5000毫巴压力范围内。 压力依赖性去极化速率在低压下是线性的,并且在更高的压力下达到高原。 观察到高压去极化速率与卤素核电高轴耦合常数成比例。 我们还研究了惰性气体,SF6或N-2的存在如何影响去极化率。 使用模型来解释结果,其中去极化主要通过Hy-H中间物种(Y = Cl,B,I)。

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