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arXiv · 1301.0356

Exponential rank and exponential length for Z-stable simple C*-algebras

Abstract

Let $A$ be a unital separable simple ${\cal Z}$-stable C*-algebra which has rational tracial rank at most one and let $u\in U_0(A),$ the connected component of the unitary group of $A.$ We show that, for any $\epsilon>0,$ there exists a self-adjoint element $h\in A$ such that $$ |u-\exp(ih)|<\epsilon. $$ The lower bound of $|h|$ could be as large as one wants. If $u\in CU(A),$ the closure of the commutator subgroup of the unitary group, we prove that there exists a self-adjoint element $h\in A$ such that $$ |u-\exp(ih)| <\epsilon and |h|\le 2\pi. $$ Examples are given that the bound $2\pi$ for $|h|$ is the optimal in general. For the Jiang-Su algebra ${\cal Z},$ we show that, if $u\in U_0({\cal Z})$ and $\epsilon>0,$ there exists a real number $-\pi<t\le \pi$ and a self-adjoint element $h\in {\cal Z}$ with $|h|\le 2\pi$ such that $$ |e^{it}u-\exp(ih)|<\epsilon. $$

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Huaxin Lin. 2013-01-03. Exponential rank and exponential length for Z-stable simple C*-algebras. https://arxiv.org/abs/1301.0356

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