F. Fernandez-alonso et al., New scheme for measuring the angular momentum spatial anisotropy of vibrationally excited H-2 via the I (1)Pi(g) state, Z PHYS CHEM, 214, 2000, pp. 1167-1186
Citations number
79
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
ZEITSCHRIFT FUR PHYSIKALISCHE CHEMIE-INTERNATIONAL JOURNAL OF RESEARCH IN PHYSICAL CHEMISTRY & CHEMICAL PHYSICS
We report the spectroscopic detection of vibrationally excited molecular hy
drogen using 2+1 resonantly enhanced multiphoton ionization (REMPI) via the
I (1)Pi(g) (v' = 0) - X (1)Sigma(g)(+) (v" = 3) band ca. 198 nm. Vibration
ally excited H-2 was produced by passing room-temperature hydrogen over a h
ot ion gauge filament in a high-vacuum chamber. The internal energy distrib
utions were characterized spectroscopically by use of the EF (1)Sigma(g)(+)
- X (1)Sigma(g)(+) 2+1 REMPI detection scheme. We have identified band ori
gins for the S, Q, R, and P rotational branches of the I-X (0,3) band, as w
ell as isolated lines corresponding to two-photon transitions into other ne
arby H-2 gerade states, including EF (1)Sigma(g)(+) (v' = 2, 3, 4), GK (1)S
igma(g)(+) (v' = 1), and J (1)Delta(g) (v' = 0). We propose the I-X transit
ion as a suitable candidate for the determination of the rotational anisotr
opy of vibrationally excited ground-state H-2 molecules. We support this co
ntention with a calculation of the line strength moments and sensitivities
to the second- (quadrupolar) and fourth-rank (hexade-capolar) moments of th
e rotational angular momentum distributions, which is compared against the
well-established Q-branch members of the EF (1)Sigma(g)(+) - X (1)Sigma(g)(
+) two-photon transition.