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Phase Transitions
A Multinational Journal
Volume 48, 1994 - Issue 1-3
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Original Articles

Tweed microstructures: Experimental observations and some theoretical models

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Pages 85-105 | Published online: 19 Aug 2006

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

Nitzan Mizrahi, Oliver Kastner & Roni Z. Shneck. (2023) Static investigation of martensitic nucleation criticality in an atomistic model material. Philosophical Magazine 103:13, pages 1247-1278.
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Jutta Chrosch & EkhardK. H. Salje. (1997) High-resolution X-ray diffraction from microstructures. Ferroelectrics 194:1, pages 149-159.
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J. Etheridge. (1996) Structural perturbations at intervals of the coherence length in YBa2Cu3O7−δ (δ < 0.1). Philosophical Magazine A 73:3, pages 643-668.
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D.A. Vul, I. Tsatskis & E.K. H. Salje. (1995) On the possibility of equilibrium tweed microstructure in tetragonal YBa2Cu3O7 superconductors. Philosophical Magazine Letters 72:5, pages 277-284.
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Articles from other publishers (20)

Ekhard K. H. Salje. (2021) Ferroelastic Twinning in Minerals: A Source of Trace Elements, Conductivity, and Unexpected Piezoelectricity. Minerals 11:5, pages 478.
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Vitaly Yu. TopolovVitaly Yu. Topolov. 2018. Heterogeneous Ferroelectric Solid Solutions. Heterogeneous Ferroelectric Solid Solutions 1 24 .
Oktay Aktas & Ekhard K. H. Salje. (2018) Functional twin boundaries and tweed microstructures: a comparison between minerals and device materials. Mineralogical Magazine 78:7, pages 1725-1741.
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Vitaly TopolovVitaly Yu. Topolov. 2012. Heterogeneous Ferroelectric Solid Solutions. Heterogeneous Ferroelectric Solid Solutions 1 22 .
E. Burzo. 2011. Tectosilicates. Tectosilicates 113 416 .
I. Parsons. (2018) Feldspars defined and described: a pair of posters published by the Mineralogical Society. Sources and supporting information. Mineralogical Magazine 74:3, pages 529-551.
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D. Savytskii, T. Tataryn, N. Martynyuk & U. Bismayer. (2010) Theoretical Study of the Ferroelastic Domain Structure in La 0.95 Sr 0.05 Ga 0.9 Mg 0.1 O 3-x . Acta Physica Polonica A 117:1, pages 48-61.
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Ray L. Withers. 2008. 303 337 .
E. K. H. Salje, U. Bismayer, S. A. Hayward & J. Novak. (2018) Twin walls and hierarchical mesoscopic structures. Mineralogical Magazine 64:2, pages 201-211.
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John F Blackburn & Ekhard K H Salje. (1999) Sandwich domain walls in cordierite: a computer simulation study. Journal of Physics: Condensed Matter 11:24, pages 4747-4766.
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John F. Blackburn & Ekhard K. H. Salje. (1999) Formation of needle shaped twin domains in cordierite: A computer simulation study. Journal of Applied Physics 85:4, pages 2414-2422.
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Jutta Chrosch & Ekhard K. H. Salje. (1999) Temperature dependence of the domain wall width in LaAlO3. Journal of Applied Physics 85:2, pages 722-727.
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A. Bussmann-Holder & A. R. Bishop. (1997) Competing length scales in anharmonic lattices: Domains, stripes, and discommensurations. Physical Review B 56:9, pages 5297-5301.
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M. S. Moreno, A. Varela & L. C. Otero-Díaz. (1997) Cation nonstoichiometry in tin-monoxide-phase with tweed microstructure . Physical Review B 56:9, pages 5186-5192.
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A. Bussmann-Holder & A. R. Bishop. (1997) Cooperative polaronic and electronic effects in high-temperature superconductors. Journal of Superconductivity 10:4, pages 289-291.
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Dominique Schryvers. 1997. Properties of Complex Inorganic Solids. Properties of Complex Inorganic Solids 321 332 .
. (1997) X -ray analysis of mesoscopic twin structures. Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences 354:1720, pages 2815-2845.
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E K H Salje & Y Ishibashi. (1996) Mesoscopic structures in ferroelastic crystals: needle twins and right-angled domains. Journal of Physics: Condensed Matter 8:44, pages 8477-8495.
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L. M. Brown. (1995) Infinitesimal loops and tweed structure. Czechoslovak Journal of Physics 45:11, pages 893-906.
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I Tsatskis, E K H Salje & V Heine. (1994) Pattern formation during phase transitions: kinetics of partially conserved order parameters and the role of gradient energies. Journal of Physics: Condensed Matter 6:50, pages 11027-11034.
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