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Vladimir Stegailov

Publications and source records attributed to Vladimir Stegailov.

4 recordsLinked to original sources

Flat interface between amorphous ices and the role of MDA-like intermediate states in the LDA-HDA transformation

The pressure-induced transformation between low-density amorphous ice (LDA) and high-density amorphous ice (HDA) is a prototypical polyamorphic transition, yet its microscopic mechanism - and in particular the nature of intermediate amorphous (IA) states - has long remained unresolved. We present the first characterisation of a flat LDA||HDA interface, determining its equilibrium thickness and showing its link to medium-density amorphous ice (MDA). Interestingly, the thickness of the interfacial layer remains constant under compression, while its position shifts reversibly into the LDA region - an elastic response that exhibits kinetic hysteresis upon decompression, reminiscent of memory effects. For high-precision discrimination of amorphous ices, we use a neural network classifier based on SOAP (Smooth Overlap of Atomic Positions) descriptors. The systematic description of the local structure emphasizes the importance of orientational information from the hydrogen bond network. Furthermore, this approach enables molecular dynamics analysis of the LDA-to-HDA transformation, directly mapping the spatial distribution of intermediate structures relative to growing HDA domains and the surrounding LDA matrix, and revealing that MDA-like IA configurations are not a distinct bulk phase but rather localise at the LDA-HDA interface.

cond-mat.mtrl-sci↗

Polaron transport and Verwey transition in magnetite

The enigmatic puzzle of the Verwey transition in magnetite Fe$_3$O$_4$ has been unresolved for almost a century. We present an ab initio-based model of the polaron transport combining kinetic Monte Carlo and molecular dynamics calculations to directly describe the coupling of polarons with lattice vibrations. Contrary to the Ihle-Lorentz small-polaron model, we find no significant change in the band structure across the Verwey transition, however, trimeron hopping is observed. The proposed model provides dc-conductivity in agreement with experimental data across the Verwey transition.

cond-mat.mtrl-sci↗

Trimeron ordering, bandgap and polaron hopping in magnetite

In this work, we apply the DFT+U approach for a detailed ab initio study of the refined structure of the low-temperature phase of magnetite [M. S. Senn et al., Nature 481, 173 (2012)]. We compare the electronic properties of this structure and several alternatives with respect to the presence of trimeron ordering and the bandgap properties. The connection of the trimeron arrangement with site-selective doping of magnetite is discussed. Calculations of the polaron hopping energy allow us to make one step forward toward understanding the complex interplay of polaronic and bandgap contributions to electronic properties of the magnetite.

cond-mat.mtrl-sci↗

Exciton nature of plasma phase transition in warm dense fluid hydrogen

The transition of a warm dense fluid hydrogen from insulator to a conducting state at pressures of the order of 20-300 GPa and temperatures of 1000-5000 K has been the subject of active scientific research over the past few decades. The use of various experimental methods has not yet led to obtaining reliable consistent results, and despite numerous attempts, theoretical methods have not yet been able to explain the existing discrepancies, as well as the microscopic nature of the mechanism for the transition of hydrogen fluid to a conducting state. In this work, we have discovered a key mechanism of the transition associated with formation and dissociation of exciton pairs, which allows to explain several stages of the transition of hydrogen from molecular state to plasma. This mechanism is able to give quantitative description of several experimental results as well as to resolve the discrepancies between different experimental studies.

cond-mat.other↗