A study of the predissociation of NaK molecules in the 6(1)Sigma(+) state by optical-optical double resonance spectroscopy

被引:24
作者
Jabbour, ZJ [1 ]
Huennekens, J [1 ]
机构
[1] LEHIGH UNIV,DEPT PHYS,BETHLEHEM,PA 18015
关键词
D O I
10.1063/1.474474
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Predissociation of a high-lying (1) Sigma(+) state of NaK is studied using the optical-optical double resonance technique. A single-mode ring dye laser is set to a particular 2(A)(1) Sigma(+)(nu',J')<--1(X)(1) Sigma(+)(nu'',J'') transition. Another single-mode laser (Ti-sapphire) is then used to excite the molecule from the 2(A)1 Sigma+(nu',J') level, to rovibrational levels of a higher predissociating electronic state, which we identify as 6(1) Sigma(+) The predissociation is monitored by the atomic potassium emission on the 3 D-2(3/2)-->4 P-2(1/2) transition at 1.17 mu m, while bound state radiative processes are monitored by total violet fluorescence from the upper state to the various rovibrational levels of the ground 1(X)(1) Sigma(+) state. By scanning the Ti-sapphire laser, different rovibrational levels of the 6(1) Sigma(+) state can be excited. The vibrational levels probed range from nu=13 to 20 with rotational states ranging from 9 to 99. The bound state energy level positions are measured from the center frequencies of lines recorded with the Ti-sapphire laser excitation scans. The 6(1) Sigma(+) state is then described by the following molecular constants which are calculated from the experimental values of the level energies: T-e=25 560.373 cm(-1), omega(e)=89.179 26 cm(-1), omega(e)x(e)=0.730 691 cm(-1), B-e=0.067 327 327 0 cm(-1), alpha(e)=0.000 675 35 cm(-1), D-e=-3.298 31x10(-8) cm(-1), beta(el)=1.518 17x10(-8) cm(-1). The potential well depth is D-e=4416.0 cm(-1), if we assume the cm most likely asymptotic limit of Na(3 S-2(1/2))+K(5 P-2(1/2)). The equilibrium separation is R-e=4.158 Angstrom. We also report measured and calculated intensities (Franck-Condon factors) for the 6 (1) Sigma(+)-->1(X)(1) Sigma(+) violet band. The absolute predissociation rates of 6 (1) Sigma(+) levels are directly measured from the Linewidths recorded on the Ti-sapphire laser excitation scans, We measure predissociation rates ranging up to 9.4x10(9) s(-1). The dependence of the absolute predissociation rates on rovibrational quantum numbers is studied with an attempt to predict the shape of the repulsive potential curve causing the predissociatian, its crossing point with the bound state, and the type of perturbative interaction leading to the predissociatian. The state causing the predissociation is determined from correlation diagrams to be the continuum of either the 3 (3) Pi, the 3 (1) Pi, or the 5 (3) Sigma(+) State with Na(3S)+K(3D) dissociation limit. We measure the collisional broadening rate coefficients of some 6 (1) Sigma(+)<--2(A)(1) Sigma(+) Lines due to both argon and potassium perturbers, and obtain the average values, k(br)(Ar)=(1.1+/-0.2)x10(-8) cm(3) s(-1) and k(br)(K)=(1.1+/-0.6)x10(-8) cm(3) s(-1). Velocity-changing collisions and collisional excitation transfer between individual rotational levels of the 2(A)(1) Sigma(+) state are also investigated. (C) 1997 American Institute of Physics.
引用
收藏
页码:1094 / 1105
页数:12
相关论文
共 32 条
[1]   Femtosecond laser spectroscopy on the vibrational wave packet dynamics of the A(1)Sigma(+) state of NaK [J].
Berg, LE ;
Beutter, M ;
Hansson, T .
CHEMICAL PHYSICS LETTERS, 1996, 253 (3-4) :327-332
[2]  
Bernath P.F., 2020, Spectra of atoms and molecules
[3]   COMPETITION BETWEEN PHOTOIONIZATION AND PHOTOPREDISSOCIATION OF THE STATE OF K2 IN A CROSSED LASER MOLECULAR-BEAM EXPERIMENT [J].
BRECHIGNAC, C ;
CAHUZAC, P .
CHEMICAL PHYSICS LETTERS, 1984, 112 (01) :20-24
[4]   LASER-INDUCED FLUORESCENCE IN SUPERSONIC NOZZLE BEAMS - PREDISSOCIATION IN THE RB2C-PI-1(U) AND D-PI-1-U STATES [J].
BREFORD, EJ ;
ENGELKE, F .
CHEMICAL PHYSICS LETTERS, 1980, 75 (01) :132-139
[5]  
CHILD MS, 1974, MOL SPECTROSC, V2, P466
[6]   WAVE MIXING AND AMPLIFIED SPONTANEOUS EMISSION IN PURE POTASSIUM AND MIXED SODIUM-POTASSIUM VAPORS [J].
CLARK, BK ;
MASTERS, M ;
HUENNEKENS, J .
APPLIED PHYSICS B-PHOTOPHYSICS AND LASER CHEMISTRY, 1988, 47 (02) :159-167
[7]  
Corney A., 1977, Atomic and Laser Spectroscopy
[8]  
HANSSON TH, UNPUB
[9]   QUASIBOUND LEVELS AND SHAPE RESONANCES OF K-39(2)(B1-PI-U) CROSSED LASER-MOLECULAR BEAM STUDIES AND ANALYTICAL INTERPRETATION [J].
HEINZE, J ;
KOWALCZYK, P ;
ENGELKE, F .
JOURNAL OF CHEMICAL PHYSICS, 1988, 89 (06) :3428-3434
[10]  
Herzberg G, 1989, Molecular Spectra and Molecular Structure I. Spectra of Diatomic Molecules, V2nd