Aging is a ubiquitous phenomenon in glasses. In the case of phase-change materials, it leads to a drift in the electrical resistance, which hinders the development of ultrahigh density storage devices. Here we elucidate the aging process in amorphous GeTe, a prototypical phase-change material, by advanced numerical simulations, photothermal deflection spectroscopy and impedance spectroscopy experiments. We show that aging is accompanied by a progressive change of the local chemical order towards the crystalline one. Yet, the glass evolves towards a covalent amorphous network with increasing Peierls distortion, whose structural and electronic properties drift away from those of the resonantly bonded crystal. This behaviour sets phase-change materials apart from conventional glass-forming systems, which display the same local structure and bonding in both phases.

Aging mechanisms in amorphous phase-change materials / Raty, Jy; Zhang, W; Luckas, J; Chen, C; Mazzarello, R; Bichara, C; Wuttig, M. - In: NATURE COMMUNICATIONS. - ISSN 2041-1723. - 6:(2015). [10.1038/ncomms8467]

Aging mechanisms in amorphous phase-change materials

Mazzarello R;
2015

Abstract

Aging is a ubiquitous phenomenon in glasses. In the case of phase-change materials, it leads to a drift in the electrical resistance, which hinders the development of ultrahigh density storage devices. Here we elucidate the aging process in amorphous GeTe, a prototypical phase-change material, by advanced numerical simulations, photothermal deflection spectroscopy and impedance spectroscopy experiments. We show that aging is accompanied by a progressive change of the local chemical order towards the crystalline one. Yet, the glass evolves towards a covalent amorphous network with increasing Peierls distortion, whose structural and electronic properties drift away from those of the resonantly bonded crystal. This behaviour sets phase-change materials apart from conventional glass-forming systems, which display the same local structure and bonding in both phases.
2015
01 Pubblicazione su rivista::01a Articolo in rivista
Aging mechanisms in amorphous phase-change materials / Raty, Jy; Zhang, W; Luckas, J; Chen, C; Mazzarello, R; Bichara, C; Wuttig, M. - In: NATURE COMMUNICATIONS. - ISSN 2041-1723. - 6:(2015). [10.1038/ncomms8467]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1465752
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