TY - JOUR
T1 - Sb incorporation at GaAs(0 0 1)-(2 × 4) surfaces
AU - Bickel, J.
AU - Pearson, Chris
AU - Millunchick, J. Mirecki
PY - 2009/1/1
Y1 - 2009/1/1
N2 - We examine the Sb incorporation and resulting surface reconstructions of Sb and GaSb deposited on GaAs(0 0 1). These films exhibit a mixed surface reconstruction of α2(2 × 4) and α(4 × 3). Initially, Sb reacts with Ga on the surface to form 2D islands of GaSb with an α(4 × 3) surface reconstruction. The 2D islands grow to a critical size of 30 nm2, beyond which the atomic surface structure of the 2D island transforms to a α2(2 × 4) reconstruction in order to reduce the strain induced surface energy. This transformation is limited by the availability of Ga, which is necessary in higher quantities for the α2(2 × 4) reconstruction than for the α(4 × 3). The transformation results in a mixed α2(2 × 4)-α(4 × 3) surface where the surface reconstruction is coupled to the surface morphology, which may in the future provide a pathway for self-assembly of structures. © 2008 Elsevier B.V. All rights reserved.
AB - We examine the Sb incorporation and resulting surface reconstructions of Sb and GaSb deposited on GaAs(0 0 1). These films exhibit a mixed surface reconstruction of α2(2 × 4) and α(4 × 3). Initially, Sb reacts with Ga on the surface to form 2D islands of GaSb with an α(4 × 3) surface reconstruction. The 2D islands grow to a critical size of 30 nm2, beyond which the atomic surface structure of the 2D island transforms to a α2(2 × 4) reconstruction in order to reduce the strain induced surface energy. This transformation is limited by the availability of Ga, which is necessary in higher quantities for the α2(2 × 4) reconstruction than for the α(4 × 3). The transformation results in a mixed α2(2 × 4)-α(4 × 3) surface where the surface reconstruction is coupled to the surface morphology, which may in the future provide a pathway for self-assembly of structures. © 2008 Elsevier B.V. All rights reserved.
KW - Molecular beam epitaxy
KW - Self-assembly
KW - Surface reconstruction
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U2 - 10.1016/j.susc.2008.09.042
DO - 10.1016/j.susc.2008.09.042
M3 - Article
SN - 0039-6028
VL - 603
SP - 14
EP - 21
JO - Surface Science
JF - Surface Science
IS - 1
ER -