Index of authors and papers to Volume 6

Index of authors and papers to Volume 6

High Energy Density Physics 6 (2010) 406–414 Index of authors and papers to Volume 6 Abdallah Jr., J., see Colgan, J. Aglitskiy, Y., see Harding, E...

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High Energy Density Physics 6 (2010) 406–414

Index of authors and papers to Volume 6

Abdallah Jr., J., see Colgan, J. Aglitskiy, Y., see Harding, E.C. Ampleford, D.J., see Coverdale, C.A. Antici, P., see Mancic, A. Ao, T., see Ping, Y. Apruzese, J.P., see Coverdale, C.A. Arefiev, A.V., X. Gao, M.R. Tushentsov, X. Wang, B. Shim, B.N. Breizman and M.C. Downer, Size distribution and mass fraction of microclusters in laser-irradiated plasmas Audebert, P., see Bastiani-Ceccotti, S. Audebert, P., see Mancic, A.

295–300 179–184 143–152 21–28 246–257 143–152

Barnard, J.J., see Zylstra, A.B. Bastiani-Ceccotti, S., P. Renaudin, F. Dorchies, M. Harmand, O. Peyrusse, P. Audebert, S. Jacquemot, A. Calisti and D. Benredjem, Temporal and spectral behavior of sub-picosecond laser-created X-ray sources from low- to moderate-Z elements Bates, J.W., A.J. Schmitt, D.E. Fyfe, S.P. Obenschain and S.T. Zalesak, Simulations of high-gain shock-ignited inertial-confinement-fusion implosions using less than 1MJ of direct KrF-laser energy Bauche, J., see pain, J-C. Bauche-Arnoult, C., see Pain, J-c. Beck, A., see Kalmykov, S.Y. Bedacht, S., see Kalmykov, S.Y. Benredjem, D., see Bastiani-Ceccotti, S. Benuzzi-Mounaix, A., see Koenig, M. Bernstein, A., see Kalmykov, S.Y. Bernstein, A.C., see Symes, D.R. Bingham, R., see Gregori, G. Blancard, C., see Mancic, A. Blancard, C., see Porcherot, Q. Blaschke, D.B., see Gregori, G. Bornath, T., see Schwarz, V. Bouquet, S., E. Falize, C. Michaut, C.D. Gregory, B. Loupias, T. Vinci and M. Koenig, From lasers to the universe: Scaling laws in laboratory astrophysics Brambrink, E., see Koenig, M. Brebion, D., see Tanabe, M. Breizman, B.N., see Arefiev, A.V. Brown, C.R.D., see Harris, J.W.O. Brown, C.R.D., see Hoarty, D.J. Budde, A., see Fryxell, B. Budde, A., R.P. Drake, C.C. Kuranz, M.J. Grosskopf, T. Plewa and N.C. Hearn, Simulation of fabrication variations in supernova hydrodynamics experiments Bulanov, S.S., see Dong, P.

280–288

Elsevier B.V. doi:10.1016/S1574-1818(10)00055–8

121–127 99–104 21–28

99–104 128–134 356 356 200–206 200–206 99–104 210–214 200–206 274–279 166–170 21–28 76–83 166–170 305-310 368–380 210–214 89–94 121–127 95–98 105–108 162–165 135–142 153–156



Index of authors and papers to volume 6 / High Energy Density Physics 6 (2010) 406–414

Calisti, A., see Bastiani-Ceccotti, S. Cao, L., see Toleikis, S. Carley, R.E., see Symes, D.R. Carver, R.L., A.J. Cunningham, A. Frank, P. Hartigan, R. Coker, B.H. Wilde, J. Foster and P. Rosen, Laboratory astrophysics and non-ideal equations of state: the next challenges for astrophysical MHD simulations Chalupsky, J., see Dzelzainis, T.W.J. Chen, H., see Gregori, G. Chen, S., see Le Pape, S. Chittenden, J., see Coverdale, C.A. Chittenden, J.P., see Symes, D.R. Chung, H.K., see Hoarty, D.J. Chvykov, V., see Dong, P. Clark, D.S., see Hammel, B.A. Clark, R.W., see Coverdale, C.A. Clarke, R.J., see Gregori, G. Coker, R., see Carver, R.L. Colgan, J., J. Abdallah, C.J. Fontes, D.P. Kilcrease, J. Dunn, M. Purvis and R.W. Lee, Non-LTE and gradient effects in K-shell oxygen emission laser-produced plasma Collins, G., see Ping, Y. Combis, P., see Mancic, A. Correa, A.A., see Ping, Y. Coverdale, C.A., B. Jones, D.J. Ampleford, J. Chittenden, C. Jennings, J.W. Thornhill, J.P. Apruzese, R.W. Clark, K.G. Whitney, A. Dasgupta, J. Davis, J. Guiliani, P.D. LePell, C. Deeney, D.B. Sinars and M.E. Cuneo, K-shell X-ray sources at the Z Accelerator Crowley, B.J.B., see Harris, J.W.O. Crowley, B.J.B., see Hoarty, D.J. Crowley, B.J.B., see Pattison, L.K. Cuneo, M.E., see Coverdale, C.A. Cunningham, A.J., see Carver, R.L. Dasgupta, A., see Coverdale, C.A. Davis, J., see Coverdale, C.A. Davis, P., see Glenzer, S.H. Davoine, X., see Kalmykov, S.Y. De Resseguier, T., see Koenig, M. Deeney, C., see Coverdale, C.A. Delettrez, J.A., see Florido, R. Ditmar, J.R., see Harding, E.C. Ditmire, T., see Hoffmann, K. Ditmire, T., see Horton, W. Ditmire, T., see Kalmykov, S.Y. Ditmire, T., see Symes, D.R. Dong, P., see Kalmykov, S.Y. Dong, P., S.A. Reed, S.A. Yi, S.Y. Kalmykov, G. Shvets, M.C. Downer, N.H. Matlis, W.P. Leemans, C. McGuffey, S.S. Bulanov, V. Chvykov, G. Kalintchenko, K. Krushelnick, A. Maksimchuk, T. Matsuoka, A.G.R. Thomas and V. Yanovsky, Visualization of plasma bubble accelerators using Frequency-Domain Shadowgraphy Döppner, T., see Glenzer, S.H. Döppner, T., see Schwarz, V. Döppner, T., see Toleikis, S. Dorchies, F., see Bastiani-Ceccotti, S. Dorchies, F., see Mancic, A. Doss, F.W., see Kuranz, C.C. Doss, F.W., R.P. Drake and C.C. Kuranz, Repeatability in radiative shock tube experiments Downer, M.C., see Arefiev, A.V. Downer, M.C., see Dong, P. Downer, M.C., see Kalmykov, S.Y. Downer, M.C., see Sentoku, Y. Doyle, H.W., see Symes, D.R. Draeger, E., see Ping, Y.

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99–104 15–20 274–279 381–390 109–112 166–170 365–367 143–152 274–279 105–108 153–156 171–178 143–152 166–170 381–390 295-300 246–257 21–28 246–257 143–152 95–98 105–108 66–69 143–152 381–390 143–152 143–152 1–8 200–206 210–214 143–152 70–75 179–184 185–189 190–193 200–206 274–279 200–206

153–156 1–8 305-310 15–20 99–104 21–28 215–218 157–161 121–127 153–156 200–206 268–273 274–279 246–257

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Drake, R.P., see Budde, A. Drake, R.P., see Doss, F.W. Drake, R.P., see Fryxell, B. Drake, R.P., see Harding, E.C. Drake, R.P., see Huntington, C.M. Drake, R.P., see Kuranz, C.C. Du, D., see Kalmykov, S.Y. Dunn, J., see Colgan, J. Dunne, M., see Symes, D.R. Düsterer, S., see Toleikis, S. Dyer, G., see Kalmykov, S.Y. Dzelzainis, T.W.J., J. Chalupsky, M. Fajardo, R. Fäustlin, P.A. Heimann, V. Hajkova, L. Juha, M. Jurek, F.Y. Khattak, M. Kozlova, J. Krzywinski, R.W. Lee, B. Nagler, A.J. Nelson, F.B. Rosmej, R. Soberierski, S. Toleikis, T. Tschentscher, S.M. Vinko, J.S. Wark, T. Whitcher and D. Riley, Plasma emission spectroscopy of solids irradiated by intense XUV pulses from a free electron laser

135–142 157–161 162–165 179–184 194–199 215–218 200–206 295-300 274–279 15–20 200–206

Edens, A.D., see Symes, D.R. Edwards, M.J., see Hammel, B.A. Erk, B., see Hoffmann, K. Esaulov, A.A., see Shrestha, I.

274–279 171–178 185–189 113–120

Fajardo, M., see Dzelzainis, T.W.J. Falcone, R.W., see Glenzer, S.H. Falize, E., see Bouquet, S. Faussurier, G., see Mancic, A. Faussurier, G., see Porcherot, Q. Fäustlin, R., see Dzelzainis, T.W.J. Fäustlin, R.R., see Symes, D.R. Fäustlin, R.R., see Toleikis, S. Florido, R., see Mínguez, E. Florido, R., R.C. Mancini, T. Nagayama, R. Tommasini, J.A. Delettrez, S.P. Regan, V.A. Smalyuk, R. Rodríguez and J.M. Gil, Argon K-shell and bound-free emission from OMEGA direct-drive implosion cores Fontes, C.J., see Colgan, J. Förster, E., see Toleikis, S. Fortmann, C., see Glenzer, S.H. Fortmann, C., see Schwarz, V. Fortmann, C., see Toleikis, S. Foster, J., see Carver, R.L. Fourmaux, S., see Mancic, A. Fournier, K.B., see Tanabe, M. Frank, A., see Carver, R.L. Fryxell, B., C.C. Kuranz, R.P. Drake, M.J. Grosskopf, A. Budde, T. Plewa, N. Hearn, J.F. Hansen, A.R. Miles and J. Knauer, The possible effects of magnetic fields on laser experiments of Rayleigh–Taylor instabilities Fuchs, J., see Mancic, A. Fujioka, S., see Tanabe, M. Fyfe, D.E., see Bates, J.W.

109–112 1–8 368–380 21–28 76–83 109–112 274–279 15–20 57–65

Gao, X., see Arefiev, A.V. Gaul, E., see Kalmykov, S.Y. Gil, J.M., see Florido, R. Gil, J.M., see Mínguez, E. Gilleron, F., see Pain, J-C. Gillespie, R.S., see Harding, E.C. Girard, F., see Tanabe, M. Glenzer, S.H., see Huntington, C.M. Glenzer, S.H., see Schwarz, V. Glenzer, S.H., see Toleikis, S. Glenzer, S.H., H.J. Lee, P. Davis, T. Döppner, R.W. Falcone, C. Fortmann, B.A. Hammel, A.L. Kritcher, O.L. Landen, R.W. Lee, D.H. Munro, R. Redmer and S. Weber, Dense plasma X-ray scattering: Methods and applications

121–127 200–206 70–75 57–65 356 179–184 89–94 194–199 305-310 15–20

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Glimm, J., see Lim, H.K. Glosli, J., see More, R. Göde, S., see Toleikis, S. Graziani, F., see More, R. Gregori, G., see Schwarz, V. Gregori, G., see Toleikis, S. Gregori, G., D.B. Blaschke, P.P. Rajeev, H. Chen, R.J. Clarke, T. Huffman, C.D. Murphy, A.V. Prozorkevich, C.D. Roberts, G. Röpke, S.M. Schmidt, S.A. Smolyansky, S. Wilks and R. Bingham, A proposal for testing subcritical vacuum pair production with high power lasers Gregory, C.D., see Bouquet, S. Grosskopf, M.J., see Budde, A. Grosskopf, M.J., see Fryxell, B. Grosskopf, M.J., see Harding, E.C. Grosskopf, M.J., see Kuranz, C.C. Guiliani, J., see Coverdale, C.A. Gumbrell, E.T., see Symes, D.R. Guyot, F., see Koenig, M. Haan, S.W., see Hammel, B.A. Hajkova, V., see Dzelzainis, T.W.J. Hammel, B.A., see Glenzer, S.H. Hammel, B.A., S.W. Haan, D.S. Clark, M.J. Edwards, S.H. Langer, M.M. Marinak, M.V. Patel, J.D. Salmonson and H.A. Scott, High-mode Rayleigh-Taylor growth in NIF ignition capsules Hansen, J.F., see Fryxell, B. Hansen, S.B., see Scott, H.A. Hansen, S.B., see Tanabe, M. Hanson, D., see Ping, Y. Harding, E.C., R.P. Drake, Y. Aglitskiy, R.S. Gillespie, M.J. Grosskopf, J.L. Weaver, A.L. Velikovich, A. Visco and J.R. Ditmar, Experimental design to generate strong shear layers in a high-energy-density plasma Harmand, M., see Bastiani-Ceccotti, S. Harmand, M., see Mancic, A. Harris, J.W.O., see Hoarty, D.J. Harris, J.W.O., see Pattison, L.K. Harris, J.W.O., L.M. Upcraft, D.J. Hoarty, B.J.B. Crowley, C.R.D. Brown and S.F. James, A comparison of theory and experiment for high density, high temperature germanium spectra Hartigan, P., see Carver, R.L. Hatfield, P., Using line intensity ratios to determine the geometry of plasma in stars via their apparent areas Hearn, N., see Fryxell, B. Hearn, N.C., see Budde, A. Heimann, P.A., see Dzelzainis, T.W.J. Helal, A., see Hoffmann, K. Henderson, W., see Kalmykov, S.Y. Hey, D., see Le Pape, S. Hoarty, D.J., see Harris, J.W.O. Hoarty, D.J., S.F. James, C.R.D. Brown, B.M. Williams, H.K. Chung, J.W.O. Harris, L. Upcraft, B.J.B. Crowley, C.C. Smith and R.W. Lee, Measurements of emission spectra from hot, dense germanium plasma in short pulse laser experiments Hoffmann, K., B. Murphy, B. Erk, A. Helal, N. Kandadai, J. Keto and T. Ditmire, High intensity femtosecond XUV pulse interactions with atomic clusters Hohenberger, M., see Symes, D.R. Holst, B., see Schwarz, V. Horton, W., T. Ditmire and Y.P. Zakharov, Laser experiments to simulate coronal mass ejection driven magnetospheres and astrophysical plasma winds on compact magnetized stars Huffman, T., see Gregori, G. Huntington, C.M., C.M. Krauland, C.C. Kuranz, S.H. Glenzer and R.P. Drake, Imaging scattered x-ray radiation for measurement of local electron density in high-energy-density experiments Iglesias, C.A. and V. Sonnad, Robust algorithm for computing quasi-static stark broadening of spectral lines Iglesias, C.A., see Sonnad, V. Iglesias, C.A., Excited spectator electron effects on spectral line shapes Iglesias, C.A., XUV absorption by solid-density aluminum

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223–226 29–38 15–20 29–38 305-310 15–20 166–170 368–380 135–142 162–165 179–184 215–218 143–152 274–279 210–214 171–178 109–112 1–8 171–178 162–165 39–47 89–94 246–257 179–184 99–104 21–28 105–108 66–69 95–98 381–390 295–300 162–165 135–142 109–112 185–189 200–206 365–367 95–98 105–108 185–189 274–279 305–310 190–193 166–170 194–199 399–405 391–398 318–331 311–317

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Irsig, R., see Toleikis, S. Ivanov, V., see Plechaty, C. Iwamae, A., see Tanabe, M.

15–20 258–261 89–94

Jacquemot, S., see Bastiani-Ceccotti, S. James, S.F., see Harris, J.W.O. James, S.F., see Hoarty, D.J. Jennings, C., see Coverdale, C.A. Jollet, F., see Mazevet, S. Jones, B., see Coverdale, C.A. Juha, L., see Dzelzainis, T.W.J. Jurek, M., see Dzelzainis, T.W.J.

99–104 95–98 105–108 143–152 84–88 143–152 109–112 109–112

Kalintchenko, G., see Dong, P. Kalmykov, S.Y., see Dong, P. Kalmykov, S.Y., S.A. Reed, S.A. Yi, A. Beck, A.F. Lifschitz, X. Davoine, E. Lefebvre, V. Khudik, G. Shvets, P. Dong, X. Wang, D. Du, S. Bedacht, Y. Zhao, W. Henderson, A. Bernstein, G. Dyer, M. Martinez, E. Gaul, T. Ditmire and M.C. Downer, Laser wakefield electron acceleration on Texas petawatt facility: Towards multi-GeV electron energy in a single self-guided stage Kandadai, N., see Hoffmann, K. Kantsyrev, V.L., see Shrestha, I. Keto, J., see Hoffmann, K. Khattak, F.Y., see Dzelzainis, T.W.J. Khudik, V., see Kalmykov, S.Y. Kilcrease, D.P., see Colgan, J. Kirkpatrick, R.C., HEDP and new directions for fusion energy Knauer, J., see Fryxell, B. Kodama, R., see Mancic, A. Koenig, M., see Bouquet, S. Koenig, M., A. Benuzzi-Mounaix, E. Brambrink, A. Nourou, A. Ravasio, H.G. Wei, T. Vinci, S. Mazevet, F. Occelli, G. Morard, F. Guyot, T. De Resseguier and E. Lescoute, Simulating earth core using high energy lasers Koslow, I., see Ping, Y. Kozlova, M., see Dzelzainis, T.W.J. Kraeft, W.-D., see Schwarz, V. Krauland, C.M., see Huntington, C.M. Kritcher, A.L., see Glenzer, S.H. Krushelnick, K., see Dong, P. Krzywinski, J., see Dzelzainis, T.W.J. Kuranz, C.C., see Budde, A. Kuranz, C.C., see Doss, F.W. Kuranz, C.C., see Fryxell, B. Kuranz, C.C., see Huntington, C.M. Kuranz, C.C., F.W. Doss, R.P. Drake, M.J. Grosskopf and H.F. Robey, Using wall shocks to measure preheat in laser-irradiated, high-energy-density, hydrodynamics experiments

153–156 153–156

Laarmann, T., see Toleikis, S. Lancia, L., see Mancic, A. Landen, O.L., see Glenzer, S.H. Langer, S.H., see Hammel, B.A. Lazarus, J., see Symes, D.R. Le Pape, S., P. Patel, S. Chen, R. Town, D. Hey and A. Mackinnon, Proton radiography of magnetic fields in a laser-produced plasma Lee, E., see Ping, Y. Lee, H.J., see Glenzer, S.H. Lee, H.J., see Schwarz, V. Lee, H.J., see Toleikis, S. Lee, R.W., see Colgan, J. Lee, R.W., see Dzelzainis, T.W.J. Lee, R.W., see Glenzer, S.H. Lee, R.W., see Hoarty, D.J.

200–206 185–189 113–120 185–189 109–112 200–206 295–300 207–209 162–165 21–28 368–380 210–214 246–257 109–112 305–310 194–199 1–8 153–156 109–112 135–142 157–161 162–165 194–199 215–218 15–20 21–28 1–8 171–178 274–279 365–367 246–257 1–8 305–310 15–20 295–300 109–112 1–8 105–108



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Leemans, W.P., see Dong, P. Lefebvre, E., see Kalmykov, S.Y. LePell, P.D., see Coverdale, C.A. Lescoute, E., see Koenig, M. Li, B., see Toleikis, S. Liang, E., Intense laser pair creation and applications Lifschitz, A.F., see Kalmykov, S.Y. Lim, H.K., Y. Yu, J. Glimm and D.H. Sharp, Nearly discontinuous chaotic mixing Lindman, E.L., Laser-induced magnetic fields in ICF capsules Loupias, B., see Bouquet, S.

153–156 200–206 143–152 210–214 15–20 219–222 200–206 223–226 227–236 368–380

Mackinnon, A., see Le Pape, S. Maksimchuk, A., see Dong, P. Mancic, A., J. Robiche, P. Antici, P. Audebert, C. Blancard, P. Combis, F. Dorchies, G. Faussurier, S. Fourmaux, M. Harmand, R. Kodama, L. Lancia, S. Mazevet, M. Nakatsutsumi, O. Peyrusse, V. Recoules, P. Renaudin, R. Shepherd and J. Fuchs, Isochoric heating of solids by laser-accelerated protons: Experimental characterization and self-consistent hydrodynamic modeling Mancini, R.C., see Florido, R. Marinak, M.M., see Hammel, B.A. Marocchino, A., see Symes, D.R. Maron, Y., see Stambulchik, E. Martel, P., see Mínguez, E. Martinez, D., see Neff, S. Martinez, D., see Plechaty, C. Martinez, D., see Presura, R. Martinez, D., R. Presura, S. Stein, C. Plechaty and S. Neff, Reduction of instabilities in wire arrays Z-pinches Martinez, M., see Kalmykov, S.Y. Matlis, N.H., see Dong, P. Matsuoka, T., see Dong, P. Mazevet, S., see Koenig, M. Mazevet, S., see Mancic, A. Mazevet, S., M. Torrent, V. Recoules and F. Jollet, Calculations of the transport properties within the PAW formalism McGuffey, C., see Dong, P. Meiwes-Broer, K.-H., see Toleikis, S. Mendoza, M.A., see Mínguez, E. Michaut, C., see Bouquet, S. Miles, A.R., see Fryxell, B. Mima, K., see Tanabe, M. Mínguez, E., R. Florido, R. Rodríguez, J.M. Gil, J.G. Rubiano, M.A. Mendoza, D. Suárez and P. Martel, Opacity calculation for target physics using the ABAKO/RAPCAL code Mithen, J., see Toleikis, S. Moore, A.S., see Symes, D.R. Morard, G., see Koenig, M. More, R., F. Graziani, J. Glosli and M. Surh, Radiation in particle simulations More, R.M., see Zylstra, A.B. Munro, D.H., see Glenzer, S.H. Murphy, B., see Hoffmann, K. Murphy, C.D., see Gregori, G.

365–367 153–156

Nagai, K., see Tanabe, M. Nagayama, T., see Florido, R. Nagler, B., see Dzelzainis, T.W.J. Nakatsutsumi, M., see Mancic, A. Neff, S., see Martinez, D. Neff, S., see Plechaty, C. Neff, S., see Presura, R. Neff, S., D. Martinez, C. Plechaty, S. Stein and R. Presura, Magnetic acceleration of aluminum foils for shock wave experiments Nelson, A.J., see Dzelzainis, T.W.J.

21–28 70–75 171–178 274–279 9–14 57–65 242–245 258–261 262–267 237–241 200–206 153–156 153–156 210–214 21–28 84–88 153–156 15–20 57–65 368–380 162–165 89–94 57–65 15–20 274–279 210–214 29–38 280–288 1–8 185–189 166–170 89–94 70–75 109–112 21–28 237–241 258–261 262–267 242–245 109–112

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Ng, A., see Ping, Y. Nishimura, H., see Tanabe, M. Nourou, A., see Koenig, M.

246–257 89–94 210–214

Obenschain, S.P., see Bates, J.W. Occelli, F., see Koenig, M. Ogitsu, T., see Ping, Y. Ohnishi, N., see Tanabe, M. Osborne, G.C., see Shrestha, I. Osterhoff, J., see Symes, D.R. Ouart, N.D., see Shrestha, I.

128–134 210–214 246–257 89–94 113–120 274–279 113–120

Patel, M.V., see Hammel, B.A. Patel, P., see Le Pape, S. Pattison, L.K., B.J.B. Crowley, J.W.O. Harris and L.M. Upcraft, The calculation of free electron density in CASSANDRA Peyrusse, O., see Bastiani-Ceccotti, S. Peyrusse, O., see Mancic, A. Peyrusse, O., Real-space finite-difference calculations of XANES spectra along the aluminum Hugoniot from molecular dynamics simulations Ping, Y., A.A. Correa, T. Ogitsu, E. Draeger, E. Schwegler, T. Ao, K. Widmann, D.F. Price, E. Lee, H. Tam, P.T. Springer, D. Hanson, I. Koslow, D. Prendergast, G. Collins and A. Ng, Warm dense matter created by isochoric laser heating Plechaty, C., see Martinez, D. Plechaty, C., see Neff, S. Plechaty, C., see Presura, R. Plechaty, C., R. Presura, S. Stein, D. Martinez, S. Neff, V. Ivanov and Y. Stepanenko, Penetration of a laser-produced plasma across an applied magnetic field Plewa, T., see Budde, A. Plewa, T., see Fryxell, B. Porcherot, Q., G. Faussurier and C. Blancard, Thermodynamic conditions of shock Hugoniot curves in hot dense matter Prendergast, D., see Ping, Y. Presura, R., see Martinez, D. Presura, R., see Neff, S. Presura, R., see Plechaty, C. Presura, R., D. Martinez, S. Wright, C. Plechaty and S. Neff, Radiation from wire arrays imploding on an axial target Price, D.F., see Ping, Y. Primout, M., see Tanabe, M. Prozorkevich, A.V., see Gregori, G. Przystawik, A., see Toleikis, S. Purvis, M., see Colgan, J.

171–178 365–367

262–267 246–257 89–94 166–170 15–20 295–300

Radcliffe, P., see Toleikis, S. Rajeev, P.P., see Gregori, G. Ravasio, A., see Koenig, M. Recoules, V., see Mancic, A. Recoules, V., see Mazevet, S. Redmer, R., see Glenzer, S.H. Redmer, R., see Schwarz, V. Redmer, R., see Toleikis, S. Reed, S.A., see Dong, P. Reed, S.A., see Kalmykov, S.Y. Regan, S.P., see Florido, R. Renaudin, P., see Bastiani-Ceccotti, S. Renaudin, P., see Mancic, A. Riley, D., see Dzelzainis, T.W.J. Roberts, C.D., see Gregori, G. Robey, H.F., see Kuranz, C.C.

15–20 166–170 210–214 21–28 84–88 1–8 305–310 15–20 153–156 200–206 70–75 99–104 21–28 109–112 166–170 215–218

66–69 99–104 21–28 357–364 246–257 237–241 242–245 262–267 258–261 135–142 162–165 76–83 246–257 237–241 242–245 258–261



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Robiche, J., see Mancic, A. Rodríguez, R., see Florido, R. Rodríguez, R., see Mínguez, E. Röpke, G., see Gregori, G. Rosen, P., see Carver, R.L. Rosmej, F.B., see Dzelzainis, T.W.J. Rozsnyai, B.F., Hot plasma opacities in the presence or absence of local thermodynamic equilibrium Rubiano, J.G., see Mínguez, E.

21–28 70–75 57–65 166–170 381–390 109–112 345–355 57–65

Safronova, A.S., see Shrestha, I. Salmonson, J.D., see Hammel, B.A. Schmidt, S.M., see Gregori, G. Schmitt, A.J., see Bates, J.W. Schwarz, V., B. Holst, T. Bornath, C. Fortmann, W.-D. Kraeft, R. Thiele, R. Redmer, G. Gregori, H.J. Lee, T. Döppner and S.H. Glenzer, Static ion structure factor for dense plasmas: Semi-classical and ab initio calculations Schwegler, E., see Ping, Y. Scott, H.A. and S.B. Hansen, Advances in NLTE modeling for integrated simulations Scott, H.A., see Hammel, B.A. Sentoku, Y. and M.C. Downer, Heat transport in solid target following relativistic laser–matter interaction Sharp, D.H., see Lim, H.K. Shepherd, R., see Mancic, A. Shim, B., see Arefiev, A.V. Shrestha, I., V.L. Kantsyrev, A.S. Safronova, A.A. Esaulov, K.M. Williamson, N.D. Ouart, G.C. Osborne, M.E. Weller and M.F. Yilmaz, Investigation of characteristics of hard x-rays produced during implosions of wire array loads on 1.6 MA Zebra generator Shvets, G., see Dong, P. Shvets, G., see Kalmykov, S.Y. Sinars, D.B., see Coverdale, C.A. Smalyuk, V.A., see Florido, R. Smith, C.C., see Hoarty, D.J. Smith, C.C., Solutions of the radiation diffusion equation Smith, R.A., see Symes, D.R. Smolyansky, S.A., see Gregori, G. Soberierski, R., see Dzelzainis, T.W.J. Sonnad, V. and C.A. Iglesias, The Lanczos method applied to quasi-static stark broadening of spectral lines Sonnad, V., see Iglesias, C.A. Springer, P.T., see Ping, Y. Stambulchik, E. and Y. Maron, Plasma line broadening and computer simulations: A mini-review Stein, S., see Martinez, D. Stein, S., see Neff, S. Stein, S., see Plechaty, C. Stepanenko, Y., see Plechaty, C. Suárez, D., see Mínguez, E. Surh, M., see More, R. Symes, D.R., M. Hohenberger, J. Lazarus, J. Osterhoff, A.S. Moore, R.R. Fäustlin, A.D. Edens, H.W. Doyle, R.E. Carley, A. Marocchino, J.P. Chittenden, A.C. Bernstein, E.T. Gumbrell, M. Dunne, R.A. Smith and T. Ditmire, Investigations of laser-driven radiative blast waves in clustered gases

113–120 171–178 166–170 128–134

Tam, H., see Ping, Y. Tanabe, M., H. Nishimura, N. Ohnishi, K.B. Fournier, S. Fujioka, A. Iwamae, S.B. Hansen, K. Nagai, F. Girard, M. Primout, B. Villette, D. Brebion and K. Mima, Characterization of heatwave propagation through laser-driven Ti-doped underdense plasma Tavella, F., see Toleikis, S. Thiele, R., see Schwarz, V. Thiele, R., see Toleikis, S. Thomas, A.G.R., see Dong, P.

305–310 246–257 39–47 171–178 268–273 223–226 21–28 121–127 113–120 153–156 200–206 143–152 70–75 105–108 48–56 274–279 166–170 109–112 391–398 399–405 246–257 9–14 237–241 242–245 258–261 258–261 57–65 29–38 274–279 246–257 89–94 15–20 305–310 15–20 153–156

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Index of authors and papers to volume 6 / High Energy Density Physics 6 (2010) 406–414

Thornhill, J.W., see Coverdale, C.A. Tiggesbäumker, J., see Toleikis, S. Toleikis, S., see Dzelzainis, T.W.J. Toleikis, S., R.R. Fäustlin, L. Cao, T. Döppner, S. Düsterer, E. Förster, C. Fortmann, S.H. Glenzer, S. Göde, G. Gregori, R. Irsig, T. Laarmann, H.J. Lee, B. Li, J. Mithen, K.-H. Meiwes-Broer, A. Przystawik, P. Radcliffe, R. Redmer, F. Tavella, R. Thiele, J. Tiggesbäumker, N.X. Truong, I. Uschmann, U. Zastrau and T. Tschentscher, Soft X-ray scattering using FEL radiation for probing near-solid density plasmas at few electron volt temperatures Tommasini, R., see Florido, R. Torrent, M., see Mazevet, S. Town, R., see Le Pape, S. Truong, N.X., see Toleikis, S. Tschentscher, T., see Dzelzainis, T.W.J. Tschentscher, T., see Toleikis, S. Tushentsov, M.R., see Arefiev, A.V.

143–152 15–20 109–112

15–20 70–75 84–88 365–367 15–20 109–112 15–20 121–127

Upcraft, L., see Hoarty, D.J. Upcraft, L.M., see Harris, J.W.O. Upcraft, L.M., see Pattison, L.K. Upcraft, L.M., The screened hydrogenic model: Analytic formulae for matrix elements of radiative and collisional rates in complex ions Uschmann, I., see Toleikis, S.

105–108 95–98 66–69 332–344 15–20

Velikovich, A.L., see Harding, E.C. Villette, B., see Tanabe, M. Vinci, T., see Bouquet, S. Vinci, T., see Koenig, M. Vinko, S.M., see Dzelzainis, T.W.J. Visco, A., see Harding, E.C.

179–184 89–94 368–380 210–214 109–112 179–184

Wang, X., see Arefiev, A.V. Wang, X., see Kalmykov, S.Y. Wark, J.S., see Dzelzainis, T.W.J. Weaver, J.L., see Harding, E.C. Weber, S., see Glenzer, S.H. Wei, H.G., see Koenig, M. Weller, M.E., see Shrestha, I. Whitcher, T., see Dzelzainis, T.W.J. Whitney, K.G., see Coverdale, C.A. Widmann, K., see Ping, Y. Wilde, B.H., see Carver, R.L. Wilks, S., see Gregori, G. Williams, B.M., see Hoarty, D.J. Williamson, K.M., see Shrestha, I. Wright, S., see Presura, R.

121–127 200–206 109–112 179–184 1–8 210–214 113–120 109–112 143–152 246–257 381–390 166–170 105–108 113–120 262–267

Yanovsky, V., see Dong, P. Yi, S.A., see Dong, P. Yi, S.A., see Kalmykov, S.Y. Yilmaz, M.F., see Shrestha, I. Yu, Y., see Lim, H.K.

153–156 153–156 200–206 113–120 223–226

Zakharov, Y.P., see Horton, W. Zalesak, S.T., see Bates, J.W. Zastrau, U., see Toleikis, S. Zhao, Y., see Kalmykov, S.Y. Zylstra, A.B., J.J. Barnard and R.M. More, 1-D Van der Waals foams heated by ion beam energy deposition

190–193 128–134 15–20 200–206 280–288