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Observation of collisional relaxation from HD v = 5 and v = 6 by direct overtone pumping and photoacoustic detection

Eric A. Rohlfing, Jack J. Gelfand, Richard B. Miles, HERSCHEL A. RABITZ

Open publisher page 14 citations

Abstract

We present here the first detailed measurement on the mechanism of collisional relaxation from the upper vibrational states of HD. Preliminary results are given in which we have measured collisional relaxation following the direct overtone pumping of HD into v = 5 and v = 6 with a pulsed visible wavelength dye laser. These time-resolved photoacoustic data indicate that the vibrational to transitional (V–T) and vibrational to vibrational (V–V) relaxation rates for collisions with ground state molecules become equal near v = 5.

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We present here the first detailed measurement on the mechanism of collisional relaxation from the upper vibrational states of HD. Preliminary results are given in which we have measured collisional relaxation following the direct overtone pumping of HD into v = 5 and v = 6 with a pulsed visible wavelength dye laser. These time-resolved photoacoustic data indicate that the vibrational to transitional (V–T) and vibrational to vibrational (V–V) relaxation rates for collisions with ground state molecules become equal near v = 5.

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Available abstract

We present here the first detailed measurement on the mechanism of collisional relaxation from the upper vibrational states of HD. Preliminary results are given in which we have measured collisional relaxation following the direct overtone pumping of HD into v = 5 and v = 6 with a pulsed visible wavelength dye laser. These time-resolved photoacoustic data indicate that the vibrational to transitional (V–T) and vibrational to vibrational (V–V) relaxation rates for collisions with ground state molecules become equal near v = 5.

Key concepts: Overtone, Vibrational energy relaxation, Relaxation (psychology), Chemistry, Atomic physics, Photoacoustic imaging in biomedicine, Photoacoustic spectroscopy, Overtone band

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