On automorphisms of the Banach space $\ell _\infty /c_0$

Tom 235 / 2016

Piotr Koszmider, Cristóbal Rodríguez-Porras Fundamenta Mathematicae 235 (2016), 49-99 MSC: Primary 46E15; Secondary 03E75. DOI: 10.4064/fm117-1-2016 Opublikowany online: 23 March 2016


We investigate Banach space automorphisms $T:\ell _\infty /c_0\rightarrow \ell _\infty /c_0 $ focusing on the possibility of representing their fragments of the form $$T_{B,A}:\ell _\infty (A)/c_0(A)\rightarrow \ell _\infty (B)/c_0(B)$$ for $A, B\subseteq \mathbb {N}$ infinite by means of linear operators from $\ell _\infty (A)$ into $\ell _\infty (B)$, infinite $A\times B$-matrices, continuous maps from $B^*=\beta B\setminus B$ into $A^*$, or bijections from $B$ to $A$. This leads to the analysis of general bounded linear operators on $\ell _\infty /c_0$. We present many examples, introduce and investigate several classes of operators, for some of them we obtain satisfactory representations and for others give examples showing that this is impossible. In particular, we show that there are automorphisms of $\ell _\infty /c_0$ which cannot be lifted to operators on $\ell _\infty $, and assuming OCA+MA we show that every automorphism $T$ of $\ell _\infty /c_0$ with no fountains or with no funnels is locally induced by a bijection, i.e., $T_{B,A}$ is induced by a bijection from some infinite $B\subseteq \mathbb {N}$ to some infinite $A\subseteq \mathbb {N}$. This additional set-theoretic assumption is necessary as we show that the Continuum Hypothesis implies the existence of counterexamples of diverse flavours. However, many basic problems, some of which are listed in the last section, remain open.


  • Piotr KoszmiderInstitute of Mathematics
    Polish Academy of Sciences
    Śniadeckich 8
    00-656 Warszawa, Poland
  • Cristóbal Rodríguez-PorrasDepartamento de Matemáticas
    Facultad de Ciencias
    Universidad de Los Andes
    5101 Mérida, Venezuela
    Equipe de Logique
    UFR de Mathématiques
    Université Denis Diderot Paris 7
    75013 Paris, France

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