arXiv · 1601.04379
Precise and accurate measurements of strong-field photoionisation and a transferrable laser intensity calibration standard
Abstract
Ionization of atoms and molecules in strong laser fields is a fundamental process in many fields of research, especially in the emerging field of attosecond science. So far, demonstrably accurate data have only been acquired for atomic hydrogen (H), a species that is accessible to few investigators. Here we present measurements of the ionization yield for argon, krypton, and xenon with percentlevel accuracy, calibrated using H, in a laser regime widely used in attosecond science. We derive a transferrable calibration standard for laser peak intensity, accurate to 1.3%, that is based on a simple reference curve. In addition, our measurements provide a much-needed benchmark for testing models of ionisation in noble-gas atoms, such as the widely employed single-active electron approximation.
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W. C. Wallace, O. Ghafur, C. Khurmi, Satya Sainadh U., J. E. Calvert, D. E. Laban, M. G. Pullen, K. Bartschat, A. N. Grum-Grzhimailo, D. Wells, H. M. Quiney, X. M. Tong, I. V. Litvinyuk, R. T. Sang, D. Kielpinski. 2016-01-18. Precise and accurate measurements of strong-field photoionisation and a transferrable laser intensity calibration standard. https://doi.org/10.1103/physrevlett.117.053001
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