Indecomposable homogeneous plane continua are hereditarily indecomposable

Author:

Hagopian Charles L.

Abstract

F. Burton Jones [7] proved that every decomposable homogeneous plane continuum is either a simple closed curve or a circle of homogeneous nonseparating plane continua. Recently the author [5] showed that no subcontinuum of an indecomposable homogeneous plane continuum is hereditarily decomposable. It follows from these results that every homogeneous plane continuum that has a hereditarily decomposable subcontinuum is a simple closed curve. In this paper we prove that no subcontinuum of an indecomposable homogeneous plane continuum is decomposable. Consequently every homogeneous nonseparating plane continuum is hereditarily indecomposable. Parts of our proof follow one of R. H. Bing’s arguments [2]. At the Auburn Topology Conference in 1969, Professor Jones [8] outlined an argument for this theorem and stated that the details would be supplied later. However, those details have not appeared.

Publisher

American Mathematical Society (AMS)

Subject

Applied Mathematics,General Mathematics

Reference14 articles.

1. A homogeneous indecomposable plane continuum;Bing, R. H.;Duke Math. J.,1948

2. A simple closed curve is the only homogeneous bounded plane continuum that contains an arc;Bing, R. H.;Canadian J. Math.,1960

3. Transformation groups and 𝐶*-algebras;Effros, Edward G.;Ann. of Math. (2),1965

4. On homogeneous hereditarily unicoherent continua;Gordh, G. R., Jr.;Proc. Amer. Math. Soc.,1975

5. Homogeneous plane continua;Hagopian, Charles L.;Houston J. Math.,1975

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1. n-Fold Hyperspaces;Topics on Continua;2018

2. The terminal hyperspace of homogeneous continua;Topology and its Applications;2010-02

3. Indecomposable continua;Open Problems in Topology II;2007

4. History of Continuum Theory;Handbook of the History of General Topology;1998

5. The Early Work of F. B. Jones;Handbook of the History of General Topology;1997

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