节点文献

激光冷却SH~–阴离子的理论研究

Theoretical study of laser-cooled SH~– anion

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 万明杰李松金成国罗华锋

【Author】 Wan Ming-Jie;Li Song;Jin Cheng-Guo;Luo Hua-Feng;Computational Physics Key Laboratory of Sichuan Province, Yibin University;School of Physics and Optoelectronic Engineering, Yangtze University;College of Chemistry and Chemical Engineering, Yibin University;

【通讯作者】 万明杰;

【机构】 宜宾学院计算物理四川省高等学校重点实验室长江大学物理与光电工程学院宜宾学院化学与工程学院

【摘要】 本文采用多组态相互作用及Davidson修正方法和全电子基组计算了SH-阴离子的X1+,a3∏和A1∏态的势能曲线、电偶极矩和跃迁偶极矩.计算的光谱常数与实验值及已有的理论值符合得很好.在计算中考虑了自旋-轨道耦合效应.计算得到a31(v’=0)?X10++(v"=0)和A11(v’=0)?X1Σ0++(v"=0)跃迁具有高对角分布的弗兰克-康登因子,分别为0.9990和0.9999;计算得到a31和A11态的自发辐射寿命分别为1.472和0.188 ms.A11?X10++跃迁存在中间态a30+和a31,但中间态对激光冷却SH-阴离子的影响可以忽略.分别利用a31(v’=0)? X10++(v"=0)和A11(v’=0)? X10++(v"=0)跃迁构建了准闭合的能级系统,冷却所需的激光波长分别为492.27和478.57 nm.最后预测了激光冷却SH-阴离子能达到的多普勒温度和反冲温度.这些结果为进一步实验提供了理论参数.

【Abstract】 The potential energy curves, dipole moments, and transition dipole moments for the X1Σ+, a3∏, and A1∏electronic state of sulfur hydride anion(SH) are calculated by using the multi-reference configuration interaction method plus Davidson corrections(MRCI+Q) with all-electron basis set. The scalar relativistic corrections and core-valence correlations are also considered. In the CASSCF calculations, H(1 s) and S(3 s3 p4 s)shells are chosen as active space, and the rest orbitals S(1 s2 s2 p) as closed-shell. In the MRCI+Q calculations,the S(1 s2 s2 p) shells are used for the core-valence correlation. Spectroscopic parameters, Einstein spontaneous emission coefficient, Franck-Condon factors, and spontaneous radiative lifetimes are obtained by using Le Roy’s LEVEL8.0 program. The calculated spectroscopic parameters are in good agreement with available experimental data and theoretical values. Spin-orbit coupling(SOC) effects are evaluated with Breit-Pauli operators at the MRCI+Q level. Transition dipole moments(TDMs) for the A11?X10++,a30+?X10++,a31?X10++,A11?a30+ and A11?a31 transitions are also calculated. The strength for the A111?X10++ is the strongest in these five transitions, the value of TDM at Re is-1.3636 D. We find that the value of TDM for the a31?X10++ transition at Re is 0.5269 D. Therefore, this transition must be taken into account to build the scheme of laser-cooled SH-anion. Highly diagonally distributed Franck-Condon factor f00 for the a31(v’=0)?X10++(v "=0) transition is 0.9990 and the value for the A11(v’=0)? X10++(v" =0)transition is 0.9999. Spontaneous radiative lifetimes of τ(a31) = 1.472 μs and τ(A11) = 0.188 μs are obtained, which can ensure that laser cools SH-anion rapidly. To drive the a31?X10++ and A11?X10++transitions, just one laser wavelength is required. The wavelengths are 492.27 nm and 478.57 nm for two transitions, respectively. Notably, the influences of the intervening states a31 and a30+ on the A11? X10++ transition are small enough to implement a laser cooling project A spin-forbidden transition and a three-electronic-level transition optical scheme of laser-cooled SH-anion are constructed, respectively. In addition, the Doppler temperatures and recoil temperatures for the a31?X10++ and A11? X10++transitions of laser-cooled SH anion are also obtained, respectively.

【基金】 国家自然科学基金理论物理专项(批准号:11647075,11747071);宜宾学院计算物理四川省高等学校重点实验室开放课题基金(批准号:JSWL2014KF05)资助的课题~~
  • 【文献出处】 物理学报 ,Acta Physica Sinica , 编辑部邮箱 ,2019年06期
  • 【分类号】O56;TN249
  • 【被引频次】4
  • 【下载频次】47
节点文献中: 

本文链接的文献网络图示:

本文的引文网络