Krois Günter, Lackner Florian, Pototschnig Johann V, Buchsteiner Thomas, Ernst Wolfgang E
Institute of Experimental Physics, Graz University of Technology, Petersgasse 16, A-8010 Graz, Austria.
Phys Chem Chem Phys. 2014 Oct 28;16(40):22373-81. doi: 10.1039/c4cp03135k.
We report an experimental investigation of RbSr molecules attached to helium nanodroplets. The molecules are prepared on the surface of helium droplets by utilizing a sequential pickup scheme. We provide a detailed analysis of the excitation spectrum in the wavelength range 11,600-23,000 cm(-1). The spectrum has been recorded by resonance enhanced multi-photon ionization time-of-flight spectroscopy. The inherent mass sensitivity of the method allows for an unraveling of the RbSr spectrum, which is influenced by Rb and Sr dimer contributions, because of the proximity of their respective isotopologues. In addition, the vibrationally resolved 4(2)Σ(+) band was investigated using laser induced fluorescence spectroscopy. The vibronic transitions exhibit a lambda-shaped peak form, which is characteristic of excitations on helium droplets and indicative of strong coupling of the molecule to the superfluid helium environment. Furthermore, the vibrationally resolved 4(2)Σ(+) state enables the determination of molecular parameters, which are in excellent agreement with previously measured dispersed fluorescence spectra, originating from bare RbSr molecules. The assignment of recorded transitions is based on calculated transition dipole moments and potential energy curves. The theoretical results allow for the identification of transitions from the vibronic X(2)Σ(+) ground state to the 2(2)Π, 3(2)Σ(+), 4(2)Σ(+), 3(2)Π, 4(2)Π and 6(2)Σ(+) states. The detailed investigation of RbSr on helium droplets provides a solid basis for further high resolution gas phase studies of this diatomic molecule that holds promise in the area of cold molecular physics.
我们报告了一项关于附着在氦纳米滴上的铷锶(RbSr)分子的实验研究。通过采用连续拾取方案,在氦滴表面制备这些分子。我们对波长范围为11,600 - 23,000 cm⁻¹的激发光谱进行了详细分析。该光谱通过共振增强多光子电离飞行时间光谱法记录。由于该方法固有的质量敏感性,能够解析受铷和锶二聚体贡献影响的RbSr光谱,这是因为它们各自的同位素类似物距离较近。此外,使用激光诱导荧光光谱法研究了振动分辨的4²Σ⁺带。振转跃迁呈现出λ形峰形,这是氦滴上激发的特征,表明分子与超流氦环境有强耦合。此外,振动分辨的4²Σ⁺态能够确定分子参数,这些参数与先前测量的来自裸RbSr分子的色散荧光光谱非常吻合。记录跃迁的归属基于计算的跃迁偶极矩和势能曲线。理论结果有助于识别从振转基态X²Σ⁺到2²Π、3²Σ⁺、4²Σ⁺、3²Π、4²Π和6²Σ⁺态的跃迁。对氦滴上RbSr的详细研究为该双原子分子的进一步高分辨率气相研究奠定了坚实基础,该分子在冷分子物理领域具有应用前景。