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Introducing electron capture in the UCA energy-loss theory at low velocities
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G. Schiwietz, and P.L. Grande Introducing electron capture in the UCA energy-loss theory at low velocities Phys. Rev. A 84 2011 052703
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A. Hentz, G.S. Parkinson, P.D. Quinn, M.A. Muñoz-Márquez, D.P. Woodruff, P.L. Grande, G. Schiwietz, P. Bailey, and T.C.Q. Noakes Direct observation and theory of trajectory-dependent electronic energy losses in medium-energy ion scattering Phys. Rev. Lett. 102 2009 096103
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G. Schiwietz, G. Xiao, E. Luderer, and P.L. Grande Auger electrons from ion tracks Nucl. Instrum. Methods Phys. Res., Sect. B 164-165 2000 353 364
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G. Schiwietz, M. Roth, K. Czerski, F. Staufenbiel, and P.L. Grande Femtosecond dynamics: snapshots of the early ion-track evolution Nucl. Instrum. Methods Phys. Res., Sect. B 226 2004 683 704
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An experimental determination of electron temperatures in the center of nuclear tracks in amorphous carbon
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G. Xiao, G. Schiwietz, P.L. Grande, N. Stolterfoht, A. Schmoldt, M. Grether, R. Köhrbrück, A. Spieler, and U. Stettner Indications of nuclear-track-guided electrons induced by fast heavy ions in insulators Phys. Rev. Lett. 79/10 1997 1821 1824 (Pubitemid 127644789)
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G. Schiwietz, P.L. Grande, B. Skogvall, J.P. Biersack, R. Köhrbrück, K. Sommer, A. Schmoldt, P. Goppelt, I. Kádár, S. Ricz, and U. Stettner Influence of nuclear track potentials in insulators on the emission of target auger electrons Phys. Rev. Lett. 69 1992 628 631
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G. Schiwietz, K. Czerski, M. Roth, F. Staufenbiel, E. Luderer, P. L Grande; Si-Auger electrons from the center of nuclear tracks, Nucl. Instr. Meth. Phys. Res., Sect. B 193 (2002) 705-712. The 2pVV surface plasmon assignment in that paper is false, as follows from a more detailed analysis see ref. [28]. (Pubitemid 34710209)
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Estimated using the SRIM-2008 code Pergamon Press, New York
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