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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Nuclear quadrupole resonances in compact vapor cells: The crossover between the NMR and the nuclear quadrupole resonance interaction regimes
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Nuclear quadrupole resonances in compact vapor cells: The crossover between the NMR and the nuclear quadrupole resonance interaction regimes

机译:紧凑型蒸气室中的核四极共振:NMR与核四极共振相互作用机制之间的交叉

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We present an experimental study that maps the transformation of nuclear quadrupole resonances (NQRs)from the pure nuclear quadrupole regime to the quadrupole-perturbed Zeeman regime. The transformation presents an interesting quantum-mechanical problem since the quantization axis changes from being aligned along the axis of the electric-field gradient tensor to being aligned along the magnetic field. The large nuclear quadrupole shifts present in our system enable us to study this regime with relatively high resolution. We achieve large nuclear quadrupole shifts for I=3/2 ~(131)Xe by using a cube-shaped 1 mm~3 vapor cell with walls of different materials. The enhancement of the NQR shift from the cell wall materials is an observation that opens up an additional adjustable parameter to tune and enhance the nuclear quadrupole interactions in vapor cells. As a confirmation that the interesting and complex spectra that we observe are indeed expected, we compare our data to numerical calculations and find excellent agreement.
机译:我们目前进行的一项实验研究将核四极共振(NQRs)从纯核四极态转变为四极扰动塞曼光谱。由于量化轴从沿电场梯度张量的轴对齐变为沿磁场对齐,因此变换提出了一个有趣的量子力学问题。我们系统中存在的巨大核四极位移使我们能够以相对较高的分辨率研究这种状态。我们通过使用具有不同材料壁的立方体形1 mm〜3蒸气池,实现了I = 3/2〜(131)Xe的大核四极位移。细胞壁材料NQR位移的增强是一个观察结果,它打开了一个附加的可调整参数来调整和增强蒸气细胞中的核四极相互作用。为了证实我们观察到的有趣而复杂的光谱确实是预期的,我们将我们的数据与数值计算进行了比较,并找到了极好的一致性。

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