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Laser Excitation Spectra for Matrix Isolated IF: Observation of New Low-Lying Electronic States

机译:基质隔离IF的激光激发光谱:观察新的低位电子态

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Laser excitation of matrix isolated IF has been used to characterize three previously unobserved electronic states. Excitation at wavelengths longer than 535 nm resulted in emission from the metastable A cubed pi(2) state. Vibrational analysis of the A -X system gave an approximate value of Te (A) = 13 250 CM to the minus 1 power. The radiative lifetime of IF (A) was found to be about 11 ms. Excitation of IF at wavelengths shorter than 475 nm produced a long-lived (tau = 5 ms) fluorescence in the 720-1500 nm region. This emission originated from a low-lying electronic state (T00 19 040 cm to the minus 1 power) and terminated on the v' = 9 to 22 levels of the ground state. Laser excitation spectra, recorded by scanning the laser wavelength and monitoring this emission system, showed a progression of bands from 474 to 415 nm. Franck-Condon arguments show that the absorbing state is not the emitting state. The excitation spectra provided a T00 value of 21 100 cm to the minus 1 power and a vibrational constant of 500 cm to the minus 1 power for the absorbing state.

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