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Original Articles

Diffraction from void and bubble arrays in irradiated molybdenum

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Pages 1447-1453 | Received 29 Jan 1973, Published online: 20 Aug 2006

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Dmitrii O. Kharchenko & Vasyl O. Kharchenko. (2016) Modeling phase decomposition and patterning in binary alloy systems subjected to neutron irradiation. Radiation Effects and Defects in Solids 171:11-12, pages 819-839.
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Dmitrii O. Kharchenko, Vasyl O. Kharchenko & Anna I. Bashtova. (2014) Modeling self-organization of nano-size vacancy clusters in stochastic systems subjected to irradiation. Radiation Effects and Defects in Solids 169:5, pages 418-436.
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V. Kh. Alimov & B. M.U. Scherzer. (1990) Temperature dependence of 4He/3He Exchange in Ni. Radiation Effects and Defects in Solids 114:1-2, pages 137-144.
Read now
N.K. Zhevago & A.I. Ryazanov. (1987) Diffraction and channeling of photons and neutrons in superlattices. Radiation Effects 104:1-4, pages 87-98.
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V.I. Dubinko, V.V. Slezov, A.V. Tur & V.V. Yanovsky. (1986) The theory of gas bubble lattice. Radiation Effects 100:1-2, pages 85-104.
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K. Kamada. (1984) Recent Progress of a Surface Exfoliation Mechanism Under Ion Bombardment. Fusion Technology 6:2P2, pages 483-490.
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E. Johnson & LewisT. Chadderton. (1983) Anion voidage and the void superlattice in electron irradiated Caf2 . Radiation Effects 79:1-4, pages 183-233.
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P.J. Goodhew. (1983) On the migration of helium bubbles. Radiation Effects 78:1-4, pages 381-383.
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P.B. Johnson, D.J. Mazey & J.H. Evans. (1983) Bubble structures in He+ irradiated metals. Radiation Effects 78:1-4, pages 147-156.
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M.W. Finnis, A. Van Veen & L.M. Caspers. (1983) The energy of helium filled platelets and bubbles in molybdenum. Radiation Effects 78:1-4, pages 121-132.
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G. Carter & W.A. Grant. (1981) Blister formation on a he ion irradiated amorphous metal (metglas 2826a). Radiation Effects 58:5, pages 145-150.
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P.B. Johnson & D.J. Mazey. (1980) Observations of a fcc helium gas-bubble superlattice in copper, nickel, and stainless steel. Radiation Effects 53:3-4, pages 195-202.
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S.S. Brenner & D.N. Seidman. (1975) Field ion microscope observations of voids in neutron irradiated molybdenum. Radiation Effects 24:2, pages 73-78.
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D.H. Warrington & H. Grimmer. (1974) Dislocation Burgers vectors for cubic metal grain boundaries. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 30:3, pages 461-468.
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Articles from other publishers (87)

Anton Schneider, Yongfeng Zhang, Chao Jiang & Jian Gan. (2022) The effects of temperature and dose rate on the properties of irradiation induced void superlattices. Materialia 22, pages 101373.
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Hui Yang, Ze-Hua Feng, He-Ran Wang, Yun-Peng Zhang, Zheng Chen, Tian-Yuan Xin, Xiao-Rong Song, Lu Wu & Jing Zhang. (2021) Phase-field modeling of irradiated void microstructure evolution of Fe-Cr alloy. Acta Physica Sinica 70:5, pages 054601.
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Cheng Sun, Yipeng Gao, David J. Sprouster, Yongfeng Zhang, Di Chen, Yongqiang Wang, Lynne E. Ecker & Jian Gan. (2020) Disordering of helium gas bubble superlattices in molybdenum under ion irradiation and thermal annealing. Journal of Nuclear Materials 539, pages 152315.
Crossref
Nasr M. Ghoniem. 2020. Handbook of Materials Modeling. Handbook of Materials Modeling 2215 2242 .
Nasr M Ghoniem. 2018. Handbook of Materials Modeling. Handbook of Materials Modeling 1 28 .
M.A. Tunes, R.W. Harrison, G. Greaves, J.A. Hinks & S.E. Donnelly. (2017) Effect of He implantation on the microstructure of zircaloy-4 studied using in situ TEM. Journal of Nuclear Materials 493, pages 230-238.
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Aidan M Robinson, Philip D Edmondson, Colin English, Sergio Lozano-Perez, Graeme Greaves, Jonathan A Hinks, Stephen E Donnelly & Chris R M Grovenor. (2017) The effect of temperature on bubble lattice formation in copper under in situ He ion irradiation. Scripta Materialia 131, pages 108-111.
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Dmitrii O. Kharchenko, Vasyl O. Kharchenko, Anna I. Bashtova & Irina O. Lysenko. (2016) Patterning and pattern selection in a surface layer: Feedback between point defects population and surface layer temperature variations. Physica A: Statistical Mechanics and its Applications 463, pages 152-162.
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D.O. Kharchenko, V.O. Kharchenko & A.I. Bashtova. (2016) Self-Organization of an Ensemble of Vacancies under the Spinodal Decomposition of Binary Systems at Continuous Irradiation. Ukrainian Journal of Physics 61:3, pages 265-278.
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J. Gan, D.D. KeiserJr.Jr., B.D. Miller, A.B. Robinson, D.M. Wachs & M.K. Meyer. (2015) Thermal stability of fission gas bubble superlattice in irradiated U–10Mo fuel. Journal of Nuclear Materials 464, pages 1-5.
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Santosh Dubey, S. K. Joshi & B. S. Tewari. (2014) On the Issue of Radiation-Induced Instability in Binary Solid Solutions. Conference Papers in Science 2014, pages 1-5.
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S E Donnelly, G Greaves, J A Hinks, C J Pawley, M-F Beaufort, J-F Barbot, E Oliviero & R P Webb. (2014) In-situ TEM studies of ion-irradiation induced bubble development and mechanical deformation in model nuclear materials. MRS Proceedings 1645.
Crossref
D.O. Kharchenko, V.O. Kharchenko & A.I. Bashtova. (2013) Simulation of a Spatial Organization of Point Defects in Irradiated Systems. Ukrainian Journal of Physics 58:10, pages 993-1008.
Crossref
Santosh Dubey & Anter El-Azab. (2013) Irradiation-induced composition patterns in binary solid solutions. Journal of Applied Physics 114:12.
Crossref
V.O. Kharchenko & D.O. Kharchenko. (2012) Noise-induced pattern formation in system of point defects subjected to irradiation. The European Physical Journal B 85:11.
Crossref
Z. Insepov, J. Rest, A.M. Yacout, A.Yu. Kuksin, G.E. Norman, V.V. Stegailov, S.V. Starikov & A.V. Yanilkin. (2012) Derivation of kinetic coefficients by atomistic methods for studying defect behavior in Mo. Journal of Nuclear Materials 425:1-3, pages 41-47.
Crossref
Yulan Li, Shenyang Hu, Xin Sun, Fei Gao, Charles H. HenagerJr.Jr. & Mohammad Khaleel. (2010) Phase-field modeling of void migration and growth kinetics in materials under irradiation and temperature field. Journal of Nuclear Materials 407:2, pages 119-125.
Crossref
Shenyang Hu & Charles H. HenagerJr.Jr.. (2009) Phase-field modeling of void lattice formation under irradiation. Journal of Nuclear Materials 394:2-3, pages 155-159.
Crossref
Srujan Rokkam, Anter El-Azab, Paul Millett & Dieter Wolf. (2009) Phase field modeling of void nucleation and growth in irradiated metals. Modelling and Simulation in Materials Science and Engineering 17:6, pages 064002.
Crossref
Marshall Stoneham. (2007) How soft materials control harder ones: routes to bioorganization. Reports on Progress in Physics 70:7, pages 1055-1097.
Crossref
K.O.E. Henriksson, K. Nordlund & J. Keinonen. (2006) Molecular dynamics simulations of helium cluster formation in tungsten. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 244:2, pages 377-391.
Crossref
P.B. Johnson & Fenella Lawson. (2006) Helium gas-bubble superlattice formation in molybdenum. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 243:2, pages 325-334.
Crossref
Yves Bréchet & Christopher Hutchinson. 2006. Solid State Physics - Advances in Research and Applications. Solid State Physics - Advances in Research and Applications 181 287 .
David Salac & Wei Lu. (2005) Irradiiaton-Induced Defect Self-Organizatoin. Irradiiaton-Induced Defect Self-Organizatoin.
D. Walgraef & N. M. Ghoniem. (2003) Effects of glissile interstitial clusters on microstructure self-organization in irradiated materials. Physical Review B 67:6.
Crossref
B. Deconninck & F. Bodart. (1998) Channelling and low energy electron induced X-ray spectroscopy on neon implanted beryllium single crystal. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 136-138, pages 410-414.
Crossref
F.E. Lawson & P.B. Johnson. (1998) A temperature threshold for gas-bubble superlattice formation in molybdenum. Journal of Nuclear Materials 252:1-2, pages 34-42.
Crossref
Daniel WalgraefDaniel Walgraef. 1997. Spatio-Temporal Pattern Formation. Spatio-Temporal Pattern Formation 197 229 .
P.B. Johnson, Karen L. Reader & R.W. Thomson. (1996) Transverse sections from helium-implanted copper using ultramicrotomy. Journal of Nuclear Materials 231:1-2, pages 92-102.
Crossref
D. Walgraef, J. Lauzeral & N. M. Ghoniem. (1996) Theory and numerical simulations of defect ordering in irradiated materials. Physical Review B 53:22, pages 14782-14794.
Crossref
D. Walgraef & N. M. Ghoniem. (1995) Nonlinear dynamics of self-organized microstructure under irradiation. Physical Review B 52:6, pages 3951-3962.
Crossref
Y. Jin & M. C. Chaturvedi. (1995) New Short-Range Ordered Structure in Ni-Ge Alloy. Physical Review Letters 75:4, pages 681-684.
Crossref
P.B. Johnson & D.J. Mazey. (1995) Gas-bubble superlattice formation in bcc metals. Journal of Nuclear Materials 218:3, pages 273-288.
Crossref
V. I. Dubinko & A. A. Turkin. (1994) Self-organization of cavities under irradiation. Applied Physics A Solids and Surfaces 58:1, pages 21-34.
Crossref
N M Ghoniem & D Walgraef. (1993) Evolution dynamics of 3D periodic microstructures in irradiated materials. Modelling and Simulation in Materials Science and Engineering 1:5, pages 569-590.
Crossref
W. Jäger & H. Trinkaus. (1993) Defect ordering in metals under irradiation. Journal of Nuclear Materials 205, pages 394-410.
Crossref
P.B. Johnson, K.J. Stevens & R.W. Thomson. (1991) Image processing techniques in the study of ordered bubble arrays: bubble facetting in vanadium. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 62:2, pages 218-227.
Crossref
P. B. Johnson. 1991. Fundamental Aspects of Inert Gases in Solids. Fundamental Aspects of Inert Gases in Solids 167 184 .
H. Ullmaier. 1991. Atomic Defects in Metals. Atomic Defects in Metals 432 435 .
H. Ullmaier. 1991. Atomic Defects in Metals. Atomic Defects in Metals 398 399 .
H. Ullmaier. 1991. Atomic Defects in Metals. Atomic Defects in Metals 397 398 .
D.J. Mazey. (1990) Fundamental aspects of high-energy ion-beam simulation techniques and their relevance to fusion materials studies. Journal of Nuclear Materials 174:2-3, pages 196-209.
Crossref
P. B. Johnson, R. W. Thomson & D. J. Mazey. (1990) Large bubble-like features ordered on a macrolattice in helium-implanted gold. Nature 347:6290, pages 265-267.
Crossref
P.B. Johnson & D.J. Mazey. (1990) A helium gas-bubble superlattice in vanadium with bubble concentrations unprecedented for metals. Journal of Nuclear Materials 170:3, pages 290-293.
Crossref
D. Ghose & S.B. Karmohapatro. 1990. 73 154 .
J. H. Evans. 1990. Patterns, Defects and Materials Instabilities. Patterns, Defects and Materials Instabilities 347 370 .
J. Bentley. (1989) Electron microscopy of phase transformations in spinodal and ordered alloys. Ultramicroscopy 30:1-2, pages 157-171.
Crossref
V.I. Dubinko, A.V. Tur, A.A. Turkin & V.V. Yanovskij. (1989) A mechanism of formation and properties of the void lattice in metals under irradiation. Journal of Nuclear Materials 161:1, pages 57-71.
Crossref
P.B. Johnson, A.L. Diprose(née Malcolm)D.J. Mazey. (1988) The He gas bubble superlattice in Cu: Analysis of structural variants in {110} grains. Journal of Nuclear Materials 158, pages 108-118.
Crossref
Yuji Baba & Teikichi A. Sasaki. (1988) XPS and TDS studies of trapping states of helium implanted in TiO2. Journal of Nuclear Materials 152:2-3, pages 295-300.
Crossref
Kanwar Krishan. (1988) Recent observations and theoretical approaches for ordering of microdefects and clusters. Bulletin of Materials Science 10:1-2, pages 175-179.
Crossref
J. Bentley. (2020) Electron microscopy of modulated and ordered alloys. Proceedings, annual meeting, Electron Microscopy Society of America 46, pages 768-769.
Crossref
C.H.L. Goodman. (1986) The need for high purity materials. Journal of Crystal Growth 75:1, pages 1-14.
Crossref
D.J. Mazey & J.H. Evans. (1986) Bubble lattice formation in titanium injected with krypton ions. Journal of Nuclear Materials 138:1, pages 16-18.
Crossref
B. M. U. Scherzer. 1986. Erosion and Growth of Solids Stimulated by Atom and Ion Beams. Erosion and Growth of Solids Stimulated by Atom and Ion Beams 222 246 .
P.B. Johnson & D.J. Mazey. (1985) The helium gas bubble superlattice: Structural features. Journal of Nuclear Materials 127:1, pages 30-46.
Crossref
J.H. Evans. (1983) Void and bubble lattice formation in molybdenum: A mechanism based on two-dimensional self-interstitial diffusion. Journal of Nuclear Materials 119:2-3, pages 180-188.
Crossref
A. van Veen, W.Th.M. Buters, T.R. Armstrong, B. Nielsen, K.T. Westerduin, L.M. Caspers & J.Th.M. de Hosson. (1983) Redistribution of implanted noble gas atoms by self-interstitials in molybdenum and nickel. Nuclear Instruments and Methods in Physics Research 209-210, pages 1055-1061.
Crossref
R.G. Saint-Jacques. (1983) La formation des cloques. Nuclear Instruments and Methods in Physics Research 209-210, pages 333-343.
Crossref
S. Nakahara & A.F. Hebard. (1983) Use of an overlay-film configuration to improve contrast of low-angle electron diffraction in thin films with columnar microstructure. Materials Letters 1:5-6, pages 141-144.
Crossref
B. L. Eyre. 1983. Physics and Contemporary Needs. Physics and Contemporary Needs 43 107 .
Bernhard M. U. Scherzer. 1983. Sputtering by Particle Bombardment II. Sputtering by Particle Bombardment II 271 355 .
D. M. Follstaedt & S. M. Myers. (2020) Tem Observation of Bubbles in He-Implanted α-Fe. Proceedings, annual meeting, Electron Microscopy Society of America 40, pages 590-591.
Crossref
M.I. Baskes, R.H.J. Fastenau, P. Penning, L.M. Caspers & A. van Veen. (1981) On the low-temperature nucleation and growth of bubbles by helium bombardment of metals. Journal of Nuclear Materials 102:3, pages 235-245.
Crossref
R. Manzke & M. Campagna. (1981) Study of He bubbles in Al by electron energy loss spectroscopy. Solid State Communications 39:2, pages 313-317.
Crossref
R.D.S. Yadava. (1981) The bubble coalescence model of radiation blistering. Journal of Nuclear Materials 98:1-2, pages 47-62.
Crossref
W. Jäger & J. Roth. (1981) He trapping and bubble formation in Ni, stainless steel 316 and amorphous alloys. Nuclear Instruments and Methods 182-183, pages 975-983.
Crossref
J.H. Evans, A. van Veen & L.M. Caspers. (1981) Direct evidence for helium bubble growth in molybdenum by the mechanism of loop punching. Scripta Metallurgica 15:3, pages 323-326.
Crossref
W. Jäger & J. Roth. (1980) Microstructure of Ni and stainless steel after multiple energy He and D implantation. Journal of Nuclear Materials 93-94, pages 756-766.
Crossref
P.B. Johnson & D.J. Mazey. (1980) The gas-bubble superlattice and the development of surface structure in He+ and H irradiated metals at 300 K. Journal of Nuclear Materials 93-94, pages 721-727.
Crossref
R. Schulz, R. Behrisch & B.M.U. Scherzer. (1980) Trapping and mutual release of D and 3He in molybdenum. Journal of Nuclear Materials 93-94, pages 608-616.
Crossref
P.B. Johnson & D.J. Mazey. (1980) Hydrogen gas-bubble structure in proton-irradiated copper at 300 K. Journal of Nuclear Materials 91:1, pages 41-46.
Crossref
J.H. Evans. (1980) Void swelling and irradiation-induced void shrinkage in neutron irradiated molybdenum and TZM. Journal of Nuclear Materials 88:1, pages 31-41.
Crossref
P. B. Johnson & D. J. Mazey. (1979) Helium gas-bubble superlattice in copper and nickel. Nature 281:5730, pages 359-360.
Crossref
P. B. JOHNSON & D. J. MAZEY. (1978) Helium gas bubble lattices in face-centred-cubic metals. Nature 276:5688, pages 595-596.
Crossref
L.J. Chen & A.J. Ardell. (1978) Void ordering in nitrogen-ion irradiated nickel—aluminum solid solutions. Journal of Nuclear Materials 75:1, pages 177-185.
Crossref
J. Roth, B.M.U. Scherzer, R. Behrisch & P. Børgesen. (1978) The replacement of 3He implanted in Nb by subsequent 4He bombardment and vice versa. Nuclear Instruments and Methods 149:1-3, pages 53-57.
Crossref
V.A. Troyan, V.N. Bykov, G.G. Zdorovtseva, V.S. Khaimovich & L.S. Mikchlin. (1977) The development of porosity in Ni films bombarded with He+ and N+ ions. Thin Solid Films 42:2, pages 139-146.
Crossref
B.M.U. Scherzer, R. Behrisch & J. Roth. 1977. Proceedings of the International Symposium on Plasma Wall Interaction. Proceedings of the International Symposium on Plasma Wall Interaction 353 374 .
D.J. Mazey, B.L. Eyre, J.H. Evans, S.K. Erents & G.M. McCracken. (1977) A transmission electron microscopy study of molybdenum irradiated with helium ions. Journal of Nuclear Materials 64:1-2, pages 145-156.
Crossref
J.H. Evans. (1976) A mechanism of surface blistering on metals irradiated with helium ions. Journal of Nuclear Materials 61:1, pages 1-7.
Crossref
J.H. Evans. (1976) Some experimental results on the role of solute impurities in void lattice formation. Scripta Metallurgica 10:6, pages 561-562.
Crossref
T.M. Williams & B.L. Eyre. (1976) Void-swelling in solution-treated FV548 steel irradiated in a high-voltage electron microscope. Journal of Nuclear Materials 59:1, pages 18-28.
Crossref
J. H. EVANS. (1975) Formation of blisters in molybdenum bombarded with helium. Nature 256:5515, pages 299-300.
Crossref
G M McCracken. (1975) The behaviour of surfaces under ion bombardment. Reports on Progress in Physics 38:2, pages 241-327.
Crossref
M. O. Ruault & B. Jouffrey. (1974) Electron irradiation experiments in gold with 2.5-MeV electrons. Applied Physics Letters 25:5, pages 265-267.
Crossref
Wen-Tong Geng & Qian Zhan. (2020) Friedel Oscillations and Helium Bubble Ordering in Molybdenum. SSRN Electronic Journal.
Crossref

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