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Structure Dependence of Kinetic Energy Released in X-ray-Induced Fragmentation

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Part of the book series: Springer Proceedings in Physics ((SPPHY,volume 162))

Abstract

We have analyzed transient structures in deuterated acetylene isomerized by 10 fs 400 eV X-rays, and probed by coulomb explosion with a second delayed X-ray pulse. Structural changes are revealed through fragment kinetic energy release.

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Notes

  1. 1.

    AMO75113 collaboration: V. Petrovic, C. Liekhus-Schmaltz, P. Bucksbaum, I. Tenney, T. Osipov, A. Belkacem, N. Berrah, R. Boll, C. Bomme, C. Bostedt, J. Bozek, S. Carron, R. Coffee, J. Devin, B. Erk, L. Fang, K. Ferguson, R. Field, L. Foucar, L. Frasinski, J.M. Glownia, M. Guehr, A. Kamalov, J. Krzywinski, H. Li, J. Marangos, T. Martinez, B. McFarland, S. Miyabe, B. Murphy, A. Natan, D. Rolles, A. Rudenko, A. Sanchez, M. Siano, E. Simpson, L. Spector, M. Swiggers,  D. Walke, S. Wang, and T. Weber.

References

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Acknowledgments

This research used the SLAC Linac Coherent Light Source, which is a DOE Office of Science User Facility. The members of the AMO75113 collaboration contributed advice and assistance. This research was supported by the National Science Foundation under Grant No. PHY-0649578.

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Correspondence to Philip H. Bucksbaum .

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Bucksbaum, P.H., Liekhus-Schmaltz, C.E., Tenney, I., Petrovic, V.S. (2015). Structure Dependence of Kinetic Energy Released in X-ray-Induced Fragmentation. In: Yamanouchi, K., Cundiff, S., de Vivie-Riedle, R., Kuwata-Gonokami, M., DiMauro, L. (eds) Ultrafast Phenomena XIX. Springer Proceedings in Physics, vol 162. Springer, Cham. https://doi.org/10.1007/978-3-319-13242-6_32

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