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The nuclear quadrupole moment of Cs-133: Accurate relativistic coupled cluster calculations for CsF within the point-charge model for nuclear quadrupole moments

机译:Cs-133核四极矩:核四极矩点电荷模型内CsF的相对论耦合簇精确计算

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The nuclear quadrupole moment (NQM) of the 133 isotope of Cs is not accurately known. This is due to the fact that the electric field gradient (EFG) of Ca for the 6p(1 2)P(3/2) excited state was only estimated from the 6p(r(-3)) expectation value using Hartree-Slater calculations. CsF microwave data yield a very accurate nuclear quadrupole coupling constant (NQCC). We therefore decided to perform relativistic coupled cluster calculations for CsF in order to obtain a more accurate value for the Cs EFG. At the highest level of theory we obtain a NQM for the first vibrational-rotational state of -3.43(10) mb which should be more accurate than the previously estimated value of -3.7(1.6) mb or -9(4) mb. (C) 1998 American Institute of Physics. [References: 40]
机译:尚不清楚Cs 133同位素的核四极矩(NQM)。这是由于以下事实:仅使用Hartree-Slater根据6p(r(-3))的期望值估算了6p(1 2)P(3/2)激发态的Ca的电场梯度(EFG)计算。 CsF微波数据产生非常精确的核四极耦合常数(NQCC)。因此,我们决定对CsF进行相对论耦合聚类计算,以获得Cs EFG的更准确值。在最高理论水平下,我们获得了-3.43(10)mb的第一振动-旋转状态的NQM,它应该比先前估计的-3.7(1.6)mb或-9(4)mb更准确。 (C)1998美国物理研究所。 [参考:40]

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