1. Gahn, C., Tsakiris, G. D., Pukhov, A., Meyer-ter-Vehn, J., Pretzler, G., Thirolf, P., Habs, D., & White, K. J. (1999). Multi-MeV electron beam generation by direct laser acceleration in high-density plasma channels. Phys. Rev. Lett., 83(23), 4772.10.1103/PhysRevLett.83.4772
2. Gibbon, P., Mašek, M., Teubner, U., Lu, W., Nicoul, M., Shymanovich, U., Tarasevitch, A., Zhou, P., Sokolowski-Tinten, K., & von der Linde, D. (2009). Modelling and optimisation of fs laser-produced Kα sources. Appl. Phys. A, 96(1), 23–31.10.1007/s00339-009-5188-0
3. Volpe, L., Batani, D., Morace, A., & Santos, J. J. (2013). Collisional and collective effects in two dimensional model for fast-electron transport in refluxing regime. Phys. Plasmas, 20(1), 013104.10.1063/1.4771586
4. Lichters, R., Pfund, R. E., & Meyer-ter-Vehn, J. (1997). LPIC++: A parallel one-dimensional relativistic electromagnetic particle-in-cell code for simulating laser-plasma-interaction. Garching: Max-Planck-Institut für Quantenoptik. (MPQ 225). www.lichters.net/download.html.
5. Grismayer, T., Mora, P., Adam, J. C., & Héron, A. (2008). Electron kinetic effects in plasma expansion and ion acceleration. Phys. Rev. E, 77(6), 066407.10.1103/PhysRevE.77.06640718643383
6. Neumayer, P., Aurand, B., Basko, M., Ecker, B., Gibbon, P., Hochhaus, D. C., Karmakar, A., Kazakov, E., Kuhl, T., Labaune, C., Rosmej, O., Tauschwitz, An., Zielbauer, B., & Zimmer, D. (2010). The role of hot electron refluxing in laser-generated K-alpha sources. Phys. Plasmas, 17, 103103.10.1063/1.3486520
7. Salvat, F., Fernández-Varea, J. M., & Sempau, J. (2006, July). PENELOPE-2006: A code system for Monte Carlo simulation of electron and photon transport. In Workshop Proceedings (Vol. 4, p. 7).
8. Vauzour, B., Debayle, A., Vaisseau, X., Hulin, S., Schlenvoigt, H. P., Batani, D., Baton, S. D., Honrubia, J. J., Nicolai, Ph., Beg, F. N., Benocci, R., Chawla, S., Coury, M., Dorchies, F., Fourment, C., d’Humieres, E., Jarrot, L. C., McKenna, P., Rhee, Y. J., Tikhonchuk, V. T., Volpe, L., Yahia, V., & Santos, J. J. (2014). Unraveling resistive versus collisional contributions to relativistic electron beam stopping power in cold-solid and in warm-dense plasmas. Phys. Plasmas, 21(3), 033101.10.1063/1.4867187
9. Davies, J. R. (2002). How wrong is collisional Monte Carlo modeling of fast electron transport in high-intensity laser-solid interactions? Phys. Rev. E, 65(2), 026407.
10. Martinolli, E., Koenig, M., Baton, S. D., Santos, J. J., Amiranoff, F., Batani, D., Perelli-Cippo, E., Scianitti, F., Gremillet, L., Mélizzi, R., Decoster, A., Rousseaux, C., Hall, T. A., Key, M. H., Snavely, R., MacKinnon, A. J., Freeman, R. R., King, J. A., Stephens, R., Neely, D., & Clarke, R. J. (2006). Fast-electron transport and heating of solid targets in high-intensity laser interactions measured by Kα fluorescence. Phys. Rev. E, 73(4), 046402.10.1103/PhysRevE.73.04640216711934
11. Henke, B. L., Gullikson, E. M., & Davis, J. C. (1993) X-ray interactions: photoabsorption, scattering, transmission, and reflection at E=50-30000 eV, Z=1-92. Atom. Data Nucl. Data Tables, 54(2), 181–342.10.1006/adnd.1993.1013