Publications/Publicaciones

2015

- ”Comparative simulation study of the structure of the plastic zone produced by nanoindentation”, Y.Gao, C.J.Ruestes, D.R.Tramontina, H.Urbassek, J.Mech 5 Phys. Solids 75 (2015) 58.

- ”Morphological changes in polycrystalline Fe after compression and release”, N. Gunkelmann, D.R Tramontina, E.M. Bringa, H.M. Urbassek, J. Appl. Phys. 117 (2015) 085901.

2014

- ”Shock waves in polycrystalline iron: plasticity and phase transitions”, N. Gunkelmann, D.R. Tramontina et al. Physical Review B 89 (2014) 140102.

- ”Orientation-dependent response of nanovoids in Tantalum monocrystals”, D.R. Tramontina, C.J. Ruestes, Y. Tang, E.M. Bringa, Computational Materials Science 90 (2014) 82.

- ”Atomistic Simulation of Tantalum Nanoindentation: effects of indenter diameter, penetration velocity,

and interatomic potentials on defect mechanisms and evolution”, C. Ruestes, A. Stukowski, Y. Tang, D.R. Tramontina et al., Materials Science and Engineering A 613 (2014) 390.

- ”Interplay of plasticity and phase transformation in shock wave propagation in nanocrystalline iron”, N. Gunkelmann, D.R. Tramontina et al., New Journal of Physics 16(9) (2014) 093032.

2013

- ”Molecular dynamics simulations of shock-induced plasticity in Tantalum”, D.R.Tramontina et al., High Energy Density Physics 10 (2013) 9.

- ”Parametric study of the plastic threshold for grain-grain collisions”, E.Millán, D.Tramontina, E.M.Bringa, MACI 4 (2013) 315.

2012

- ”Impact studies with peridynamics”, C.J. Ruestes, D.R.Tramontina, E.M. Bringa, Mecánica Computacional XXXI, 11 (2012) 1877-1887.

- “Why Nanoprojectiles Work Differently than Macroimpactors: The Role of Plastic Flow”, Christian Anders, Eduardo M. Bringa, Gerolf Ziegenhain, et al., Phys. Rev. Lett. 108, 027601 (2012). Nota de tapa 01/2012.

- “Ductile tensile failure in metals through initiation and growth of nanosized voids”. Tang, Y., Bringa, E.M., Meyers, M.A., Acta Materialia 60, 4856 (2012).

- “Are porous materials radiation resistant?”, E.M. Bringa et al., NanoLetters 12, 3351 (2012). DOI: 10.1021/nl201383u. Nota de tapa 07/2012.

- "Collisions of porous clusters: a granular-mechanics study of compaction and fragmentation". Christian Ringl, Eduardo M. Bringa, Dalía S. Bertoldi and Herbert M. Urbassek. Astrophysical Journal 752, 151 (2012).

- “Analytical solution of the mean-field Ising model for finite systems”, D. Bertoldi, E.M. Bringa, and E. Miranda. J. Phys. Cond. Matter 24, 226004 (2012).

- “Crater formation caused by nanoparticle impact: a molecular dynamics study of crater volume and shape”, C. Anders, E.M. Bringa, F. Fioretti, G. Ziegenhain, and H. Urbassek, Physical Review B 85, 235440 (2012).

- “Crater Formation by Nanoparticle Impact: Contribution of Gas, Melt, and Plastic Flow”, C. Anders, G. Ziegenhain, C. Ruestes, E.M. Bringa and H. Urbassek, New Journal of Physics, in press (2012).

- “Hydrogen absorption in Pd nanoparticles of different shapes”, Eduardo A Crespo, Margarita M Ruda, Susana Ramos de Debiaggi, Eduardo M Bringa, Fabian U. Braschi, Graciela Bertolino. Int. J. Hydrogen Energy, en prensa (2012).

- “Inverse Hall-Petch Effect in Nanocrystalline Tantalum”, Tang, Y., Bringa, E.M., Meyers, M.A., enviado a Acta Materialia (2012).

- “Polycrystalline iron under compression: plasticity and phase transitions”, N. Gunkelmann, E.M. Bringa, K. Kang, et al., enviado a Phys. Rev. B (2012).

- “Simulation of livestock settlement dynamics in arid environments”, E. Millan, S. Goiran, E.M. Bringa, C. Garcia-Garino and J. Aranibar, enviado a Environmental Modelling and Software (2012).

- “Atomistic simulation of soldering iron filled carbon nanotubes”, G. Garcia, E.M. Bringa, M. Weissmann, R. Ramirez, M. Kiwi, enviado a Applied Physics Letters (2012).

- “Nano-hillock formation in diamond-like carbon induced by swift heavy projectiles in the electronic stopping regime: experiments and atomistic simulations”, D. Schwen, E. Bringa, J. Krauser, A. Weidinger, C. Trautmann, and H. Hofsäss, enviado a Applied Physics Letters (2012).

- “Impact on porous targets: penetration, crater formation, target compaction, ejection”, C. Ringl, E.M. Bringa, and H.M. Urbassek, enviado a Phys. Rev. E (2012).

- “Compaction of granular matter by single and multiple impacts on a hard wall”, C. Ringl, E.M. Bringa, and H.M. Urbassek, enviado a Soft Matter (2012).

- “Mechanical response of nano-porous gold: tension-compression asymmetry”. D. Farkas, A. Caro, and E.M. Bringa, enviado a Phys. Rev. B (2012).

- “Implementation of a Bayesian Statistics Segmentation Algorithm in GPUs", F. Fioretti, D. Lemma, E. Millan, R. Isoardi y E.M. Bringa. Aceptado en los anales de High Performance computing Latin America (HPC LatAm 2012).

- “Parallel execution of a parameter sweep for molecular dynamics simulations in a hybrid GPU/CPU environment”, E. Millan, C. Garcia Garino y E.M. Bringa, enviado a CACIC 2012 (Argentine Congress on Computer Sciences).

2011

- “Sputtering from a porous material by penetrating ions”, J.F. Rodriguez-Nieva, E.M. Bringa, T.A. Cassidy, R.E. Johnson, A. Caro, M. Fama, M.J. Loeffler, R.A. Baragiola, and D. Farkas. Astrophys. J. Letters, 743 (2011) L5

- "Stopping of hypervelocity clusters in solids", Christian Anders, Eduardo M. Bringa, Gerolf Ziegenhain and Herbert M. Urbassek, New J. Phys.13, (2011) 113019.

- "A new method to generate dust with astrophysical properties", J.F. Hansen, W. van Breugel, E.M. Bringa, B. Eberly, G.A. Graham, B.A. Remington, E.A. Taylor, and A.G.G.M. Tielens, J. Inst. 6 (2011) 5010.

- "Exact solution of two level system and the Einstein solid in the microcanonical formalism". Dalía S Bertoldi, Eduardo M Bringa, Enrique N Miranda. Eur. J. Phys. 32 (2011), 1–9

- "Penetration scaling in atomistic simulations of hypervelocity impact", Andrew Higginbotham, E.M. Bringa, Emma A. Taylor, Giles Graham, International Journal of Impact Engineering 38 (2011) 247-251.

- "Growth and collapse of nanovoids in tantalum monocrystals", Yizhe Tang, Eduardo M. Bringa b, Bruce A. Remington c, Marc A. Meyers, Acta Materialia 59 (2011) 1354–1372.

- "Simulations of copper single crystals subjected to rapid shear. Higginbotham." A., Bringa, E.M., Marian, J., Park, N., Suggit, M., Wark, J.S. 2011 Journal of Applied Physics 109 (6), art. no. 063530.

2010

- "Void initiation in fcc metals: Effect of loading orientation and nanocrystalline effects". Eduardo M. Bringa, Sirirat Traiviratana, Marc A. Meyers. Acta Materialia. Volume 58, Issue 13, August 2010, Pages 4458-4477

- "Molecular Dynamics Simulation of Laser Melting of Nanocrystalline Au". Zhibin Lin, Elodie Leveugle, Eduardo M. Bringa and Leonid V. Zhigilei. The Journal of Physical Chemistry C, 114 (12), pp 5686–5699,2010.

- “The role of dislocations in the growth of nanosized voids in ductile failure of metals”, Meyers MA, Traiviratana S, Lubarda VA, et al., JOM 61, 35-41 (2009). PREMIO TMS “Structured Materials Division JOM Best Paper Award”, 02/2010.

- "Laser shocking of materials: Toward the national ignition facility." Meyers, M.A., Remington, B.A., Maddox, B., Bringa, E.M. 2010 JOM 62 (1), pp. 24-30.

- "The strength of single crystal copper under uniaxial shock compression at 100 GPa." Murphy, W.J., Higginbotham, A., Kimminau, G., Barbrel, B., Bringa, E.M., Hawreliak, J., Kodama, R., Wark, J.S. 2010 Journal of Physics Condensed Matter 22 (6), art. no. 065404.

- "Effects of microalloying on the mobility and mechanical response of interfaces in nanocrystalline Cu." Caro, A., Farkas, D., Bringa, E.M., Gilmer, G.H., Zepeda-Ruiz, L.A. 2010 Materials Science Forum 633-634, pp. 21-30.

- "Phonon instabilities in uniaxially compressed fcc metals as seen in molecular dynamics simulations." Kimminau, G., Erhart, P., Bringa, E.M., Remington, B., Wark, J.S. 2010 Physical Review B - Condensed Matter and Materials Physics 81 (9), art. no. 092102.

- "Molecular dynamics simulation of laser melting of nanocrystalline Au." Lin, Z., Leveugle, E., Bringa, E.M., Zhigilei, L.V. 2010 Journal of Physical Chemistry C 114 (12), pp. 5686-5699.

- "Void initiation in fcc metals: Effect of loading orientation and nanocrystalline effects." Bringa, E.M., Traiviratana, S., Meyers, M.A. 2010, Acta Materialia 58, pp. 4458-4477.

- Response to "Shear Impossibility-Comments on 'Void Growth by Dislocation Emission' and 'Void Growth in Metals'". Bringa, E.M., Lubarda, V.A., Meyers, M.A.. 2010, Scripta Materialia 63 (1), pp. 148-150.

- “GP-GPU Processing of Molecular Dynamics Simulations”. Emmanuel Millán Kujtiuk, Eduardo M. Bringa, Andrew Higginbotham, Carlos García Garino. 2010. Proceedings of HPC 2010. High-Performance Computing Symposium. http://www.39jaiio.org.ar/node/121 ISSN: 1851- 9326, pp. 3234-3248.

2009

- "The role of dislocations in the growth of nanosized voids in ductile failure of metals", Marc A. Meyers, Sirirat Traiviratana, V. A. Lubarda, David J. Benson and Eduardo M. Bringa. JOM Journal of the Minerals, Metals and Materials Society Volume 61, Number 2, 35-41.

- “The mechanical behavior and nanostructure of silica nanowires via simulations”, L. Dávila, V. Leppert and E.M. Bringa, Scripta Materialia 60, 843-846 (2009).

- “X-ray diffraction of electrodeposited nanocrystalline nickel under high pressure”, C. D. Grant,1, J. C. Crowhurst, T. Arsenlis, E. M. Bringa, et al., J. Appl. Phys. 105, 084311 (2009).

- “Laser compression and fragmentation of metals”, M.A. Meyers, H. Jarmakani, B.Y. Cao, C.T. Wei, B. Kad, B.A. Remington, E.M. Bringa, B. Maddox, D. Kalantar, D. Eder and A. Koniges, DYMAT 2009 (9th International Conference on the Mechanical and Physical Behaviour of materials under Dynamic Loading), 999-1006, published by EDP Sciences (2009).

- “Laser compression of nanocrystalline metals”. Meyers, M.A., Jarmakani, H.N., Bringa, E.M., Earhart, P., Remington, B.A., Vo, N.Q., Wang, Y.M. 2009 AIP Conference Proceedings 1195, pp. 1051-1056.

2008

- "Materials under Extreme Conditions: Ultrahigh Strength under Shock Loading" Bringa, Eduardo M. American Physical Society, 2008 APS March Meeting, March 10-14, 2008.

- “Void growth in metals: Atomistic calculations”, S. Triviratana, E.M. Bringa, D. Benson and M.A. Meyers, Acta Materialia 56, 3874-3886 (2008).

- “Fivefold twin formation during annealing of nanocrystalline Cu”, E. Bringa, D. Farkas, A. Caro, Y.M. Wang, J. McNaney and R. Smith, Scripta Materialia 59, 1267-1270 (2008).

- “Shocked materials at the intersection of experiment and simulation”, Lorenzana HE, Belak JF, Bradley KS, et al., Sci. Model. Simulation 15, 159-186 (2008).

- “Molecular dynamics simulations of shock compression of nickel: From monocrystals to nanocrystals”, H. Jarmakani, E.M. Bringa, P. Erhart et al.Acta Mater. 56, 5584-5604 (2008).

- “Micro-craters in aluminum foils: Implications for dust particles from comet Wild 2 on NASA's Stardust spacecraft”, Kearsley AT, Graham GA, Burchell MJ, et al., Int. J. Impact Eng. 35, 1616- 1624 (2008).

- “Simulating picosecond x-ray diffraction from shocked crystals using post-processing molecular dynamics calculations”, G. Kimminau et al., J. Phys. Cond. Matter 20, 505203 (2008)

- “Numerical analysis of nanograin collision by classical molecular dynamics”, N Ohnishi, E M Bringa, B A Remington, G Gilmer, R Minich, Y Yamaguchi and A.G.G.M. Tielens, J. Physics: Conference Series 112, 042017 (2008).