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As pointed out by the reviewer, we are reporting product appearance times for the excitation to a particular level. More precisely, what we refer to as a lifetime is 1/k for a single exponential fit to the product appearance. Given the frequency width of our laser and the uncertainty width of the individual rotational levels, it is not possible to directly measure state-to-state dynamics. We therefore follow the traditional practice of referring to the inverse product appearance rate constants as life-times
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As pointed out by the reviewer, we are reporting "product appearance times" for the excitation to a particular level. More precisely, what we refer to as a lifetime is 1/k for a single exponential fit to the product appearance. Given the frequency width of our laser and the uncertainty width of the individual rotational levels, it is not possible to directly measure state-to-state dynamics. We therefore follow the traditional practice of referring to the inverse product appearance rate constants as life-times.
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