The main aim of this paper is to generalize the classical concept of a positive operator, and to develop a general extension theory, which overcomes not only the lack of a Hilbert space structure, but also the lack of a normable topology. The concept of anti-duality carries an adequate structure to define positivity in a natural way, and is still general enough to cover numerous important areas where the Hilbert space theory cannot be applied. Our running example - illustrating the applicability of the general setting to spaces bearing poor geometrical features - comes from noncommutative integration theory. Namely, representable extension of linear functionals of involutive algebras will be governed by their induced operators. The main theorem, to which the vast majority of the results is built, gives a complete and constructive characterization of those operators that admit a continuous positive extension to the whole space. Various properties such as commutation, or minimality and maximality of special extensions will be studied in detail.
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Univ Missouri, Dept Math, Columbia, MO 65211 USAUniv Missouri, Dept Math, Columbia, MO 65211 USA
Ashbaugh, Mark S.
Gesztesy, Fritz
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Univ Missouri, Dept Math, Columbia, MO 65211 USAUniv Missouri, Dept Math, Columbia, MO 65211 USA
Gesztesy, Fritz
Mitrea, Marius
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Univ Missouri, Dept Math, Columbia, MO 65211 USAUniv Missouri, Dept Math, Columbia, MO 65211 USA
Mitrea, Marius
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Shterenberg, Roman
Teschl, Gerald
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Univ Vienna, Fac Math, A-1090 Vienna, Austria
Int Erwin Schrodinger Inst Math Phys, A-1090 Vienna, AustriaUniv Missouri, Dept Math, Columbia, MO 65211 USA
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Corvinus Univ Budapest, Dept Math, IX Fovam Ter 13-15, H-1093 Budapest, Hungary
Eotvos Lorand Univ, Dept Appl Anal & Computat Math, Pazmany Peter Setany 1-C, H-1117 Budapest, HungaryCorvinus Univ Budapest, Dept Math, IX Fovam Ter 13-15, H-1093 Budapest, Hungary
Tarcsay, Zsigmond
Gode, Abel
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Eotvos Lorand Univ, Dept Appl Anal & Computat Math, Pazmany Peter Setany 1-C, H-1117 Budapest, HungaryCorvinus Univ Budapest, Dept Math, IX Fovam Ter 13-15, H-1093 Budapest, Hungary