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Showing papers by "Robert Jones published in 2005"


Journal ArticleDOI
TL;DR: In this article, the authors measured the ionization rate for CO molecules exposed to intense $30\phantom{\rule{0.3em}{0ex}}\mathrm{fsec}$ laser pulses as a function of the angle between the molecular and laser polarization axes.
Abstract: We have measured the ionization rate for CO molecules exposed to intense $30\phantom{\rule{0.3em}{0ex}}\mathrm{fsec}$ $780\phantom{\rule{0.3em}{0ex}}\mathrm{nm}$ laser pulses as a function of the angle between the molecular and laser polarization axes. Nonionizing, $70\phantom{\rule{0.3em}{0ex}}\mathrm{fsec}$ laser pulses are used to coherently prepare the molecules, preferentially aligning them for the strong-field ionization experiments. We find a 2:1 ionization-rate ratio for molecules aligned parallel or perpendicular to the ionizing field.

63 citations


Journal ArticleDOI
TL;DR: In this article, a liquid-crystal-based, laser-pulse shaper has been used in combination with an adaptive genetic feedback algorithm to investigate closed-loop control of intense laser fragmentation of ${\mathrm{S}}_{8}$ molecules.
Abstract: A liquid-crystal-based, laser-pulse shaper has been used in combination with an adaptive genetic feedback algorithm to investigate closed-loop control of intense laser fragmentation of ${\mathrm{S}}_{8}$ molecules. We observe that the yield ratios $\mathrm{S}_{N}{}^{+}:\mathrm{S}_{M}{}^{+}$, for the production of specific charged fragments $\mathrm{S}_{N}{}^{+}$ and $\mathrm{S}_{M}{}^{+}$, can be enhanced by $g300%$ relative to those observed using transform-limited $150\text{\ensuremath{-}}\mathrm{fs}$ laser pulses. We have explored the effectiveness of time- and frequency-domain pulse parametrizations while shaping either (i) only the spectral-phase distribution or (ii) the spectral-phase and amplitude distributions of the light. We find that pulse complexity, requiring control beyond simple manipulation of the peak pulse intensity and duration, is critical for optimizing the yield ratios for most species. The ``optimum'' pulse shapes obtained using different pulse parametrizations show significant differences while yielding similar signal enhancements. In some cases, comparison of the different optimum pulse shapes appears to be a useful method for identifying pulse traits that are, or are not, important for manipulating a particular yield ratio. The importance of specific traits in the optimum pulse shapes is also explored numerically using principal control analysis. We conclude that closed-loop control can be effective for optimizing highly nonlinear strong-field processes. However, in general, intensity variations in a focused laser beam severely limit one's ability to associate the optimization results with specific dynamical mechanisms that bear primary responsibility for the control.

33 citations




Proceedings ArticleDOI
22 May 2005
TL;DR: In this paper, nitrogen molecules in a capillary waveguide are transiently aligned using intense laser pulses and significant variations in the HHG yield are observed as the molecular axis direction is varied with respect to the polarization an intense probe laser.
Abstract: Nitrogen molecules in a capillary waveguide are transiently aligned using intense laser pulses. Significant variations in the HHG yield are observed as the molecular axis direction is varied with respect to the polarization an intense probe laser.