Ejection of quasi-free-electron pairs from the helium-atom ground state by single-photon absorption

We investigate the single-photon double ionization of helium at photon energies of 440 and 800 eV. We observe doubly charged ions with close to zero momentum corresponding to electrons emitted back to back with equal energy. These slow ions are the unique fingerprint of an elusive quasifree photon d...

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Main Authors: Schoffler, M., Stuck, C., Waitz, M., Trinter, F., Jahnke, T., Lenz, U., Jones, M., Belkacem, A., Landers, A., Pindzola, M., Cocke, C., Colgan, J., Kheifets, A., Bray, Igor, Schmidt-Bocking, H., Dorner, R., Weber, T.
Format: Journal Article
Published: The American Physical Society 2013
Online Access:http://hdl.handle.net/20.500.11937/34709
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author Schoffler, M.
Stuck, C.
Waitz, M.
Trinter, F.
Jahnke, T.
Lenz, U.
Jones, M.
Belkacem, A.
Landers, A.
Pindzola, M.
Cocke, C.
Colgan, J.
Kheifets, A.
Bray, Igor
Schmidt-Bocking, H.
Dorner, R.
Weber, T.
author_facet Schoffler, M.
Stuck, C.
Waitz, M.
Trinter, F.
Jahnke, T.
Lenz, U.
Jones, M.
Belkacem, A.
Landers, A.
Pindzola, M.
Cocke, C.
Colgan, J.
Kheifets, A.
Bray, Igor
Schmidt-Bocking, H.
Dorner, R.
Weber, T.
author_sort Schoffler, M.
building Curtin Institutional Repository
collection Online Access
description We investigate the single-photon double ionization of helium at photon energies of 440 and 800 eV. We observe doubly charged ions with close to zero momentum corresponding to electrons emitted back to back with equal energy. These slow ions are the unique fingerprint of an elusive quasifree photon double ionization mechanism predicted by Amusia et al. nearly four decades ago [ J. Phys. B 8 1248 (1975)]. It results from the nondipole part of the electromagnetic interaction. Our experimental data are supported by calculations performed using the convergent close-coupling and time-dependent close-coupling methods.
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T08:38:10Z
publishDate 2013
publisher The American Physical Society
recordtype eprints
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spelling curtin-20.500.11937-347092017-09-13T15:23:29Z Ejection of quasi-free-electron pairs from the helium-atom ground state by single-photon absorption Schoffler, M. Stuck, C. Waitz, M. Trinter, F. Jahnke, T. Lenz, U. Jones, M. Belkacem, A. Landers, A. Pindzola, M. Cocke, C. Colgan, J. Kheifets, A. Bray, Igor Schmidt-Bocking, H. Dorner, R. Weber, T. We investigate the single-photon double ionization of helium at photon energies of 440 and 800 eV. We observe doubly charged ions with close to zero momentum corresponding to electrons emitted back to back with equal energy. These slow ions are the unique fingerprint of an elusive quasifree photon double ionization mechanism predicted by Amusia et al. nearly four decades ago [ J. Phys. B 8 1248 (1975)]. It results from the nondipole part of the electromagnetic interaction. Our experimental data are supported by calculations performed using the convergent close-coupling and time-dependent close-coupling methods. 2013 Journal Article http://hdl.handle.net/20.500.11937/34709 10.1103/PhysRevLett.111.013003 The American Physical Society fulltext
spellingShingle Schoffler, M.
Stuck, C.
Waitz, M.
Trinter, F.
Jahnke, T.
Lenz, U.
Jones, M.
Belkacem, A.
Landers, A.
Pindzola, M.
Cocke, C.
Colgan, J.
Kheifets, A.
Bray, Igor
Schmidt-Bocking, H.
Dorner, R.
Weber, T.
Ejection of quasi-free-electron pairs from the helium-atom ground state by single-photon absorption
title Ejection of quasi-free-electron pairs from the helium-atom ground state by single-photon absorption
title_full Ejection of quasi-free-electron pairs from the helium-atom ground state by single-photon absorption
title_fullStr Ejection of quasi-free-electron pairs from the helium-atom ground state by single-photon absorption
title_full_unstemmed Ejection of quasi-free-electron pairs from the helium-atom ground state by single-photon absorption
title_short Ejection of quasi-free-electron pairs from the helium-atom ground state by single-photon absorption
title_sort ejection of quasi-free-electron pairs from the helium-atom ground state by single-photon absorption
url http://hdl.handle.net/20.500.11937/34709