English

On the existence of overcomplete sets in some classical nonseparable Banach spaces

Functional Analysis 2021-06-09 v3 General Topology Logic

Abstract

For a Banach space XX its subset YXY\subseteq X is called overcomplete if Y=dens(X)|Y|=dens(X) and ZZ is linearly dense in XX for every ZYZ\subseteq Y with Z=Y|Z|=|Y|. In the context of nonseparable Banach spaces this notion was introduced recently by T. Russo and J. Somaglia but overcomplete sets have been considered in separable Banach spaces since the 1950ties. We prove some absolute and consistency results concerning the existence and the nonexistence of overcomplete sets in some classical nonseparable Banach spaces. For example: c0(ω1)c_0(\omega_1), C([0,ω1])C([0,\omega_1]), L1({0,1}ω1)L_1(\{0,1\}^{\omega_1}), p(ω1)\ell_p(\omega_1), Lp({0,1}ω1)L_p(\{0,1\}^{\omega_1}) for p(1,)p\in (1, \infty) or in general WLD Banach spaces of density ω1\omega_1 admit overcomplete sets (in ZFC). The spaces \ell_\infty, /c0\ell_\infty/c_0, spaces of the form C(K)C(K) for KK extremally disconnected, superspaces of 1(ω1)\ell_1(\omega_1) of density ω1\omega_1 do not admit overcomplete sets (in ZFC). Whether the Johnson-Lindenstrauss space generatedin \ell_\infty by c0c_0 and the characteristic functions of elements of an almost disjoint family of subsets of N\mathbb N of cardinality ω1\omega_1 admits an overcomplete set is undecidable. The same refers to all nonseparable Banach spaces with the dual balls of density ω1\omega_1 which are separable in the weak^* topology. The results proved refer to wider classes of Banach spaces but several natural open questions remain open.

Keywords

Cite

@article{arxiv.2006.00806,
  title  = {On the existence of overcomplete sets in some classical nonseparable Banach spaces},
  author = {Piotr Koszmider},
  journal= {arXiv preprint arXiv:2006.00806},
  year   = {2021}
}

Comments

Revised following the suggestions of a referee