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Original Articles

Evolution of cascade region during the thermal spike

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Pages 1-7 | Received 10 Nov 1981, Published online: 19 Aug 2006

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Mai. Ghaly, Kai. Nordlund & R.S. Averback. (1999) Molecular dynamics investigations of surface damage produced by kiloelectronvolt self-bombardment of solids. Philosophical Magazine A 79:4, pages 795-820.
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T. Diaz De La Rubia & M.W. Guinan. (1994) MD studies of high energy cascades in Cu. Radiation Effects and Defects in Solids 129:1-2, pages 31-39.
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A.J. E. Foreman, W.J. Phythian & C.A. English. (1992) The molecular dynamics simulation of irradiation damage cascades in copper using a many-body potential. Philosophical Magazine A 66:5, pages 671-695.
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W.J. Phythian, C.A. English, D.H. Yellen & D.J. Bacon. (1991) Collapse of displacement cascades in h.c.p. metals. Philosophical Magazine A 63:5, pages 821-833.
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I.M. Robertson, J.S. Vetrano, M.A. Kirk & M.L. Jenkins. (1991) On the formation of vacancy type dislocation loops from displacement cascades in nickel. Philosophical Magazine A 63:2, pages 299-318.
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W.J. Phythian, C.A. English, D.J. Bacon & B.L. Eyre. (1990) Characterization of heavy-ion damage in ruthenium. II. Cascade collapse. Philosophical Magazine A 62:6, pages 617-632.
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T. Diaz de la Rubia, R.S. Averback, R. Benedek & I.M. Robertson. (1990) Molecular dynamics studies of the primary state of radiation damage. Radiation Effects and Defects in Solids 113:1-3, pages 39-52.
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J. Mischler, B. Maurel & N. Benazeth. (1989) The influence of cone-covered surface structures on sputtering and secondary electron emission: Model. Radiation Effects and Defects in Solids 108:2-4, pages 145-157.
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V.G. Chudinov, V.I. Protasov & O.A. Zalukovskaya. (1987) Possible mechanism of homogeneous nucleation, growth and annealing of interstitial-type dislocation loops in pure FCC metals. Radiation Effects 103:1-4, pages 141-147.
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V.G. Kapinos & P.A. Platonov. (1987) The model of nucleation of vacancy clusters in the cascade range in the stage of the thermal spike. Radiation Effects 103:1-4, pages 45-57.
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S.J. Zinkle, L.E. Seitzman & W.G. Wolfer. (1987) I. Energy calculations for pure metals. Philosophical Magazine A 55:1, pages 111-125.
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V.I. Protasov & V.G. Chudinov. (1984) Kinetics of heterogeneous nucleation of aligned vacancy type dislocation loops under radiation and stress. Radiation Effects 83:3-4, pages 197-202.
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V.I. Protasov & V.G. Chudinov. (1984) Kinetics of the diffuse processes within cascade region at the subthreshold stages. Radiation Effects 83:3-4, pages 185-196.
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V.G. Chudinov & V.I. Protasov. (1984) Possible mechanism of void nucleation in FCC metals. Radiation Effects 81:1-2, pages 83-88.
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Si-Mian Liu, Irene J. Beyerlein & Wei-Zhong Han. (2020) Two-dimensional vacancy platelets as precursors for basal dislocation loops in hexagonal zirconium. Nature Communications 11:1.
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Hongbo Xv, Jie Zhao, Fei Ye & Ke Tong. (2019) Strain-induced transformation between vacancy voids and stacking fault tetrahedra in Cu. Computational Materials Science 158, pages 359-368.
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A.V. Karavaev, V.V. Dremov & G.V. Ionov. (2016) Equilibrium thermodynamics of radiation defect clusters in δ-phase Pu–Ga alloys. Journal of Nuclear Materials 468, pages 46-55.
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N. Li, K. Hattar & A. Misra. (2013) In situ probing of the evolution of irradiation-induced defects in copper. Journal of Nuclear Materials 439:1-3, pages 185-191.
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Yurii Kashlev. 2012. Kinetics and Thermodynamics of Fast Particles in Solids. Kinetics and Thermodynamics of Fast Particles in Solids 271 280 .
B. P. Uberuaga, R. G. Hoagland, A. F. Voter & S. M. Valone. (2007) Direct Transformation of Vacancy Voids to Stacking Fault Tetrahedra. Physical Review Letters 99:13.
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Werner Schilling & Hans Ullmaier. 2006. Materials Science and Technology. Materials Science and Technology.
Cesar R.S. da Silva & Claudio Scherer. (2001) Ion-induced energy propagating front and migration of point defects in metals – II. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 174:4, pages 414-422.
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Юрий Александрович Кашлев & Yurii Aleksandrovich Kashlev. (2001) Неравновесная статистическая термодинамика каскадных процессов в твердых телах: квазитемпература каскадных частицNonequilibrium statistical thermodynamics of cascade processes in solids: the quasi temperature of cascade particles. Теоретическая и математическая физика Teoreticheskaya i Matematicheskaya Fizika 126:2, pages 311-324.
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R.S. AVERBACK & T. DIAZ DE LA RUBIA. 1998. Solid State Physics - Advances in Research and Applications. Solid State Physics - Advances in Research and Applications 281 402 .
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D.K. Tappin, D.J. Bacon, C.A. English & W.J. Phythian. (1993) The characterisation of displacement-cascade collapse in Ni-Cr-Fe alloys. Journal of Nuclear Materials 205, pages 92-97.
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K. Morishita, N. Sekimura, T. Toyonaga & S. Ishino. (1992) Thermodynamical evaluation of cascade damage evolution by molecular dynamics calculation. Journal of Nuclear Materials 191-194, pages 1123-1127.
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V.G. Chudinov & V.M. Dyadin. (1992) Free energies of vacancy complex formation in fcc metals with different characters of interatomic interaction forces. Journal of Nuclear Materials 186:3, pages 277-282.
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Yu. A. Kashlev. (1991) Nonequilibrium statistical thermodynamics of displacement cascade thermalization in a solid. Theoretical and Mathematical Physics 87:2, pages 532-539.
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R Rauch, J Peisl, A Schmalzbauer & G Wallner. (1990) Loop formation in Cu and Al after low-temperature fast-neutron irradiation. Journal of Physics: Condensed Matter 2:46, pages 9009-9017.
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V. G. Chudinov, R. M. J. Cotterill & V. V. Andreev. (1990) Kinetics of the Diffuse Processes within a Cascade Region in the Sub-Threshold Stages of F.C.C. and H.C.P. Metals. physica status solidi (a) 122:1, pages 111-120.
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C.A. English, W.J. Phythian & A.J.E. Foreman. (1990) Considerations of recoil effects in microstructural evolution. Journal of Nuclear Materials 174:2-3, pages 135-140.
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V. G. Chudinov, B. N. Goshchitskii, N. V. Moseev & V. V. Andreev. (1990) Kinetics of Radiation-Induced Segregation of Impurities in f.c.c. Metals at the Thermal Stage of the Collision Cascade. physica status solidi (a) 119:2, pages 437-442.
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V.G. Chudinov & V.V. Andreev. (1990) Atomic mechanism of primary defect heterogeneous nucleation under radiation in fcc metals with a large stacking fault energy. Journal of Nuclear Materials 172:1, pages 106-113.
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S. J. Zinkle & E. H. Lee. (1990) Effect of oxygen on vacancy cluster morphology in metals. Metallurgical Transactions A 21:5, pages 1037-1051.
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S. J. Zinkle & E. H. Lee. (1990) Effect of oxygen on vacancy cluster morphology in metals. Metallurgical Transactions A 21:4, pages 1037-1051.
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J. S. Vetrano, M. W. Bench, I. M. Robertson & M. A. Kirk. (1989) In situ studies of ion irradiation effects in an electron microscope. Metallurgical Transactions A 20:12, pages 2673-2680.
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T. Diaz de la Rubia, R. S. Averback, Horngming Hsieh & R. Benedek. (2011) Molecular dynamics simulation of displacement cascades in Cu and Ni: Thermal spike behavior. Journal of Materials Research 4:3, pages 579-586.
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