B diffusion measurements are used to probe the basic nature of self-interstitial point defects in Ge. We find two distinct self-interstitial forms - a simple one with low entropy and a complex one with entropy ~30 k at the migration saddle point. The latter dominates diffusion at high temperature. We propose that its structure is similar to that of an amorphous pocket - we name it a morph. Computational modeling suggests that morphs exist in both self-interstitial and vacancylike forms, and are crucial for diffusion and defect dynamics in Ge, Si, and probably many other crystalline solids.

Extended point defects in crystalline materials: Ge and Si

Sa;Napolitani;De Salvador;Bruno;Mirabella;
2013

Abstract

B diffusion measurements are used to probe the basic nature of self-interstitial point defects in Ge. We find two distinct self-interstitial forms - a simple one with low entropy and a complex one with entropy ~30 k at the migration saddle point. The latter dominates diffusion at high temperature. We propose that its structure is similar to that of an amorphous pocket - we name it a morph. Computational modeling suggests that morphs exist in both self-interstitial and vacancylike forms, and are crucial for diffusion and defect dynamics in Ge, Si, and probably many other crystalline solids.
2013
Istituto per la Microelettronica e Microsistemi - IMM
Inglese
110
5
155501
Sì, ma tipo non specificato
4
info:eu-repo/semantics/article
262
Cowern; N.E.B.; Simdyankin; S.a; Ahn; C.a; Bennett; N.S.a; Goss; J.P.a; Hartmann; J.M.b; Pakfar; A.c; Hamm; S.d; Valentin; J.e; Napolitani; E.f; De Sa...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/116937
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