数据:红细胞分子中相互结合的分支比$A^1\Sigma^+\sim b^3\Pi\to a^3\Sigma^+/X^1\Sigma^+$跃迁:测量和计算

R. Ferber, A. Stolyarov
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引用次数: 0

摘要

我们观察了Ti:Sapphire激光从$X^1\Sigma^+$基态激发的红细胞分子的$A^1\Sigma^+\sim b^3\Pi\to a^3\Sigma^+/X^1\Sigma^+$激光诱导荧光(LIF)光谱。用仪器分辨率为0.03 cm $^{-1}$的傅立叶变换(FT)光谱仪记录了单三重态$A\sim b$配合物的常见摄动能级的LIF辐射。测量了旋转分解$A\sim b\to a^3\Sigma^+(v_a)/X^1\Sigma^+(v_X)$级数的相对强度分布,发现在$a^3\Sigma^+$和$X^1\Sigma^+$状态的边界区域,它们的分支比约为1 $÷$ 5 $ \times$ 10 $^{-4}$。实验补充了标量和全相对论计算$A/b - X/a$跃迁偶极矩(tdm)作为核间距离的函数。在与实验LIF强度相关的能量区,对强$A - X$跃迁进行评估的\emph{从头}算TDM函数的相对系统误差估计为几个百分点。使用InGaAs二极管检测器和CaF分束器操作的FT配准系统的相对光谱灵敏度在$[6~500,12~000]$ cm $^{-1}$范围内进行校准,通过将K $_2$和KCs分子的长$A\sim b\to X(v_X)$ LIF级数的实验强度与使用\emph{从头算}$A - X$ tdm评估的理论对应强度进行比较。实验和理论跃迁概率都可以用来改善受激拉曼绝热通过过程$a\to A\sim b \to X$,该过程用于激光组装超冷红细胞分子。
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Data for: The branching ratio of intercombination $A^1\Sigma^+\sim b^3\Pi\to a^3\Sigma^+/X^1\Sigma^+$ transitions in the RbCs molecule: measurements and calculations
We observed the $A^1\Sigma^+\sim b^3\Pi\to a^3\Sigma^+/X^1\Sigma^+$ laser-induced fluorescence (LIF) spectra of the RbCs molecule excited from the ground $X^1\Sigma^+$ state by the Ti:Sapphire laser. The LIF radiation from the common perturbed levels of the singlet-triplet $A\sim b$ complex was recorded by the Fourier-transform (FT) spectrometer with the instrumental resolution of 0.03~cm$^{-1}$. The relative intensity distribution in the rotationally resolved $A\sim b\to a^3\Sigma^+(v_a)/X^1\Sigma^+(v_X)$ progressions was measured, and their branching ratio was found to be about of 1$÷$5$ \times$10$^{-4}$ in the bound region of the $a^3\Sigma^+$ and $X^1\Sigma^+$ states. The experiment was complemented with the scalar and full relativistic calculations of the $A/b - X/a$ transition dipole moments (TDMs) as functions of internuclear distance. The relative systematic error in the resulting \emph{ab initio} TDM functions evaluated for the strong $A - X$ transition was estimated as few percent in the energy region, where the experimental LIF intensities are relevant. The relative spectral sensitivity of the FT registration system, operated with the InGaAs diode detector and CaF beam-splitter, was calibrated in the range $[6~500,12~000]$~cm$^{-1}$ by a comparison of experimental intensities in the long $A\sim b\to X(v_X)$ LIF progressions of the K$_2$ and KCs molecules with their theoretical counterparts evaluated using the \emph{ab initio} $A - X$ TDMs. Both experimental and theoretical transition probabilities can be employed to improve the stimulated Raman adiabatic passage process, $a\to A\sim b \to X$, which is exploited for a laser assembling of ultracold RbCs molecules.
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