EXCITATION MECHANISMS IN THE HCN FIR $LASER^{*}$
David D. Skatrud, Geoffrey A. Blake, K. V. L. N. Sastry, Frank C. De Lucia
Abstract
David D. Skatrud, Geoffrey A. Blake, K. V. L. N. Sastry, Frank C. De Lucia
Abstract
A number of excitation mechanisms have been proposed to explain the behavior and efficiency of the HCN FIR laser. We have used millimeterwave spectroscopic techniques to probe this excitation. The effects due to the addition of CO on the distribution of vibrational excitation and laser efficiency have been studied. We have also observed the concentration of proposed chemical precursors, including the free radical CN. A spectroscopic study of $^{2}\\Sigma$ CN is also reported. 65 new lines in the first 4 vibrational states have been measured. A simultaneous non-linear least squares fit of these data, along with those previously reported by Dixon and $Woods^{1}$, has been carried out. $^{*}$ Work supported by ARO Grant DAAG-29-80-C-0026 and NASA Grant NAGW-189. $^{1}$T.A. Dixon and R. C. Woods, J. Chem. Phys. 67, 3956-3964 (1977).
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
A number of excitation mechanisms have been proposed to explain the behavior and efficiency of the HCN FIR laser. We have used millimeterwave spectroscopic techniques to probe this excitation. The effects due to the addition of CO on the distribution of vibrational excitation and laser efficiency have been studied. We have also observed the concentration of proposed chemical precursors, including the free radical CN. A spectroscopic study of $^{2}\\Sigma$ CN is also reported. 65 new lines in the first 4 vibrational states have been measured. A simultaneous non-linear least squares fit of these data, along with those previously reported by Dixon and $Woods^{1}$, has been carried out. $^{*}$ Work supported by ARO Grant DAAG-29-80-C-0026 and NASA Grant NAGW-189. $^{1}$T.A. Dixon and R. C. Woods, J. Chem. Phys. 67, 3956-3964 (1977).
Key concepts: Excitation, Laser, Physics, Optics, Quantum mechanics