By Ekhard K. H. Salje, Jason C. Lashley (auth.), Tomoyuki Kakeshita, Takashi Fukuda, Avadh Saxena, Antoni Planes (eds.)
This publication brings jointly an rising consensus on our figuring out of the advanced sensible fabrics together with ferroics, perovskites, multiferroics, CMR and high-temperature superconductors. the typical subject is the life of many competing flooring states and frustration as a collusion of spin, cost, orbital and lattice levels of freedom within the presence of illness and (both dipolar and elastic) long-range forces. a tremendous final result of the complicated unit phone and the competing interactions is that the emergent fabrics houses are very delicate to exterior fields therefore rendering those fabrics with hugely fascinating, technologically vital purposes enabled via cross-response.
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Additional resources for Disorder and Strain-Induced Complexity in Functional Materials
Gorshunov, S. Kamba, V. Bovtun, J. Pokorny, M. Savinov, V. Porokhonskyy, D. Rafaja, P. Vanek, A. R. A. Volkov, M. Dressel, R. Waser, Dielectric, infrared, and Raman response of undoped SrTiO3 ceramics: Evidence of polar grain boundaries. Phys. Rev. 184111 (2001) 45. W. Zhong, D. Vanderbilt, Competing structural instabilities in cubic perovskites. Phys. Rev. 74, art. 2587 (1995) 46. H. Salje, A pre-martensitic elastic anomaly in nanomaterials: elasticity of surface and interface layers. J. : Condens.
On the thickness of ferroelastic twin walls in lead phosphate Pb3(PO4)2 – an X-ray diffraction study. Phase Transit. 48, 135 (1994) 35. H. Salje, H. Zhang, A. , Martensitic transformation B2-R in Ni-Ti-Fe: experimental determination of the Landau potential and quantum saturation of the order parameter. J. : Condens. Matter 20, art. 275216 (2008) 36. H. Salje, H. Zhang, D. , Quantitative Landau potentials for the martensitic transformation in Ni-Al. Appl. Phys. Lett. 90, art. 221903 (2007) 37.
Pobell, D. S. Knight, T. T Dove, Crystal structure and paramagnetic behaviour of epsilon-WO3-x. J. : Condens. Matter 9, 6563 (1997) 51. E. F. W. Roberts, Effect of reduction and temperature on the electronic core levels of tungsten and molybdenum in WO3 and WxMo1-xO3 – photoelectron spectroscopy study. J. Solid State Chem. 29, 237 (1979) 52. H. Jones, K. S. G. B. R. C. M. Olive, An STM study of surface structures on WO3(001). Surf. Sci. 359, 107 (1996) 53. F. Schirmer, E. Salje, Conduction bipolarons in low-temperature crystalline WO3-x.
Disorder and Strain-Induced Complexity in Functional Materials by Ekhard K. H. Salje, Jason C. Lashley (auth.), Tomoyuki Kakeshita, Takashi Fukuda, Avadh Saxena, Antoni Planes (eds.)