论文标题

异核Rydberg分子

Heteronuclear Rydberg molecules

论文作者

Whalen, J. D., Kanungo, S. K., Lu, Y., Yoshida, S., Burgörfer, J., Dunning, F. B., Killian, T. C.

论文摘要

我们通过激发少数$^{88} \ text {sr} $原子来报道异核超范围rydberg-moletecule二聚体,以$^{84} $} $^{84} $} c的密集的背景($ n = 31-39美元)我们观察到$ N $范围内的$ν= 0 $振动状态的同位素移位,并将我们的测量值与理论预测和简单的缩放参数进行比较。通过适当选择主量子数,同位素移位足够大,可以产生几乎完美的保真度的异核二聚体。当频谱选择性受到限制时,我们通过测量分子激发速率的缩放量的比率,其相对密度为$^{88} \ text {sr} $ and $^{84} \ text {84} \ text sr {sr {sr {sr {sr {sr} $,从而获得了异核和同核激发概率30至1的比率。

We report the creation of heteronuclear ultralong-range Rydberg-molecule dimers by excitation of minority $^{88}\text{Sr}$ atoms to $5sns\,^3S_1$ Rydberg states ($n=31-39$) in a dense background of $^{84}\text{Sr}$. We observe an isotope shift of the $ν=0$ vibrational state over this range of $n$ and compare our measurements with a theoretical prediction and a simple scaling argument. With the appropriate choice of principal quantum number the isotope shift is sufficiently large to produce heteronuclear dimers with almost perfect fidelity. When the spectral selectivity is limited, we obtain a lower bound on the ratio of heteronuclear to homonuclear excitation probability of 30 to 1 by measuring the scaling of the molecular excitation rate with varying relative densities of $^{88}\text{Sr}$ and $^{84}\text{Sr}$ in the ultracold mixture.

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