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Negative Poisson's ratios for extreme states of matter

Baughman, R.H. (author)
Honeywell International, Honeywell Technology Center, Morristown, NJ 07962-1021, United States
Dantas, S.O. (author)
Departamento de Física, Universidade Federal de Juiz de Fora, Juiz de Fora, 36036-330, Mina Gerais, Brazil
Stafström, Sven (author)
Linköpings universitet,Tekniska högskolan,Beräkningsfysik
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Zakhidov, A.A. (author)
Honeywell International, Honeywell Technology Center, Morristown, NJ 07962-1021, United States
Mitchell, T.B. (author)
Natl. Inst. of Std. and Technology, Boulder, CO 80303, United States
Dubin, D.H.E. (author)
Department of Physics, Univ. of California at San Diego, San Diego, CA 92093, United States
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 (creator_code:org_t)
American Association for the Advancement of Science (AAAS), 2000
2000
English.
In: Science. - : American Association for the Advancement of Science (AAAS). - 0036-8075 .- 1095-9203. ; 288:5473, s. 2018-2022
  • Journal article (peer-reviewed)
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  • Negative Poisson's ratios are predicted for body-centered-cubic phases that likely exist in white dwarf cores and neutron star outer crusts, as well as those found for vacuumlike ion crystals, plasma dust crystals, and colloidal crystals (including certain virus crystals). The existence of this counterintuitive property, which means that a material laterally expands when stretched, is experimentally demonstrated for very low density crystals of trapped ions. At very high densities, the large predicted negative and positive Poisson's ratios might be important for understanding the asteroseismology of neutron stars and white dwarfs and the effect of stellar stresses on nuclear reaction rates. Giant Poisson's ratios are both predicted and observed for highly strained coulombic photonic crystals, suggesting possible applications of large, tunable Poisson's ratios for photonic crystal devices.

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TEKNIKVETENSKAP

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