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Dive into the research topics where Vitali B. Prakapenka is active.

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Featured researches published by Vitali B. Prakapenka.


Nature | 2009

Transparent dense sodium

Yanming Ma; M. I. Eremets; Artem R. Oganov; Yu Xie; I. A. Trojan; Sergey A. Medvedev; Andriy O. Lyakhov; Mario Valle; Vitali B. Prakapenka

Under pressure, metals exhibit increasingly shorter interatomic distances. Intuitively, this response is expected to be accompanied by an increase in the widths of the valence and conduction bands and hence a more pronounced free-electron-like behaviour. But at the densities that can now be achieved experimentally, compression can be so substantial that core electrons overlap. This effect dramatically alters electronic properties from those typically associated with simple free-electron metals such as lithium (Li; refs 1–3) and sodium (Na; refs 4, 5), leading in turn to structurally complex phases and superconductivity with a high critical temperature. But the most intriguing prediction—that the seemingly simple metals Li (ref. 1) and Na (ref. 4) will transform under pressure into insulating states, owing to pairing of alkali atoms—has yet to be experimentally confirmed. Here we report experimental observations of a pressure-induced transformation of Na into an optically transparent phase at ∼200 GPa (corresponding to ∼5.0-fold compression). Experimental and computational data identify the new phase as a wide bandgap dielectric with a six-coordinated, highly distorted double-hexagonal close-packed structure. We attribute the emergence of this dense insulating state not to atom pairing, but to p–d hybridizations of valence electrons and their repulsion by core electrons into the lattice interstices. We expect that such insulating states may also form in other elements and compounds when compression is sufficiently strong that atomic cores start to overlap strongly.


Archive | 2008

Predominant Intermediate-Spin Ferrous Iron in Lowermost Mantle Post-Perovskite and Perovskite

Jie-Feng Lin; Herman C. Watson; Gabriel Vanko; Ercan E. Alp; Vitali B. Prakapenka; P. K. Dera; Viktor V. Struzhkin; Akihiro Kubo; Jiyong Zhao; Catherine McCammon; William J. Evans


Archive | 2009

Volume collapse of iron,aluminum-bearing perovskite at mid-lower mantle pressures

K. C. Catalli; Simon S. Y. Shim; P. K. Dera; Vitali B. Prakapenka; Jiyong Zhao; Wolfgang Sturhahn; Paul Chow; Yuming Xiao; Hyunchae Cynn; William J. Evans


Archive | 2008

Compressibility and Structural Stability of Hydrous Olivine Fo97Fa3 up to 34 GPa by XRD and Raman Spectroscopy

Murli H. Manghnani; Anwar Hushur; Joseph R. Smyth; Fabrizio Nestola; George Amulele; Vitali B. Prakapenka; Daniel J. Frost


Archive | 2007

Oxygen Fugacity Buffers at Conditions of the Deep Earth

Andrew J. Campbell; L. R. Danielson; Kevin Righter; Christopher T. Seagle; Yong Wang; Vitali B. Prakapenka


Archive | 2015

Thermal equation of state and stability of (Mg_(0.06)Fe_(0.94))O

June K. Wicks; Jennifer M. Jackson; Wolfgang Sturhahn; Kirill Zhuravlev; Sergey N. Tkachev; Vitali B. Prakapenka


Archive | 2010

Thermal Equation of State of (Mg,Fe)SiO3 Perovskite in a Ne Pressure Medium

Aaron S. Wolf; James M. Jackson; P. K. Dera; Vitali B. Prakapenka


Archive | 2010

Depth and Thickness of the Post-Perovskite Boundary in Pyrolitic and San Carlos Olivine Compositions

Simon S. Y. Shim; Brent Grocholski; Vitali B. Prakapenka


Archive | 2010

Depth and Thickness of the Post-Perovskite Boundary in a MORB Composition

K. C. Catalli; Simon S. Y. Shim; Vitali B. Prakapenka


Archive | 2010

Does the Spin Transition in Mantle Silicate Perovskite Change the Seismic Properties of the Lower Mantle? (Invited)

Simon S. Y. Shim; Brent Grocholski; K. C. Catalli; Wolfgang Sturhahn; Vitali B. Prakapenka

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Guoyin Shen

Carnegie Institution for Science

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Wolfgang Sturhahn

California Institute of Technology

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H.-K. Mao

Carnegie Institution for Science

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Jiyong Zhao

Argonne National Laboratory

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K. C. Catalli

Massachusetts Institute of Technology

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Russell J. Hemley

Los Alamos National Laboratory

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