Molecular Rydberg Transitions in Rare-Gas Matrices—Evidence for Interaction Between Impurity States and Crystal States
- 1 November 1965
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 43 (9) , 2997-3004
- https://doi.org/10.1063/1.1697264
Abstract
As a first step in characterizing molecular Rydberg states in the solid state, the absorption spectra arising from acetylene and benzene impurity states in solid krypton and argon in the far‐ultraviolet region have been obtained. The first member of the acetylene Rydberg series, which appears at 8.155 eV in the gas phase, is observed to be shifted to 8.67 eV in a krypton matrix and to 9.01 eV in an argon matrix. These large energy shifts are discussed, particularly with reference to the optical spectra of rare‐gas solids and rare‐gas alloys, where similar large blue shifts are observed. The far‐ultraviolet spectra of benzene trapped in krypton and argon matrices show a qualitatively different phenomenon. The Rydberg states of benzene are observed to interact with conduction‐band continuum states to exhibit anomalous Fano‐type line shapes. The Rydberg states repulse the neighboring continuum states to produce sharp decreases in the continuum absorption intensity. These results are discussed in connection with other systems which show Fano‐type line shapes.Keywords
This publication has 47 references indexed in Scilit:
- Schumann—Runge Bands of O2 in Solid Phases: Spectroscopic Measurement of Intermolecular PotentialsThe Journal of Chemical Physics, 1965
- Absorption and Photoionization Coefficients of Acetylene, Propyne, and 1-ButyneThe Journal of Chemical Physics, 1964
- Observed and Predicted New Autoionized Energy Levels in Krypton, Argon, and XenonPhysical Review B, 1963
- Atomic absorption spectra and configuration interaction effectsJournal of Quantitative Spectroscopy and Radiative Transfer, 1962
- Ultraviolet Absorption of Solid Argon, Krypton, and XenonPhysical Review B, 1962
- Infrared Spectrum of Solid Carbon MonoxideThe Journal of Chemical Physics, 1961
- New Krypton Light Source for the Vacuum Ultraviolet*Journal of the Optical Society of America, 1955
- Intensities of Electronic Transitions of Acetylene in the Vacuum Ultraviolet1Journal of the American Chemical Society, 1952
- The absorption of light in cæsium vapour in the presence of heliumProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1935
- Über Absorptionsserien von Argon, Krypton und Xenon zu Termen zwischen den beiden Ionisierungsgrenzen2 P 3 2/0 und2 P 1 2/0The European Physical Journal A, 1935