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Local Uniqueness and Refined Spike Profiles of Ground States for Two-Dimensional Attractive Bose-Einstein Condensates

Published 10 Dec 2016 in math.AP, math-ph, math.FA, and math.MP | (1612.03295v2)

Abstract: We consider ground states of two-dimensional Bose-Einstein condensates in a trap with attractive interactions, which can be described equivalently by positive minimizers of the $L2-$critical constraint Gross-Pitaevskii energy functional. It is known that ground states exist if and only if $a< a*:= |w|22$, where $a$ denotes the interaction strength and $w$ is the unique positive solution of $\Delta w-w+w3=0$ in $R2$. In this paper, we prove the local uniqueness and refined spike profiles of ground states as $a\nearrow a*$, provided that the trapping potential $h(x)$ is homogeneous and $H(y)=\int{R2} h(x+y)w2(x)dx$ admits a unique and non-degenerate critical point.

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