Noncomputable Spectral Sets

dc.creatorTeutsch, Jason
dc.date2007-01-31
dc.date.accessioned2026-07-07T07:44:04Z
dc.date.available2026-07-07T07:44:04Z
dc.descriptionIt is possible to enumerate all computer programs. In particular, for every partial computable function, there is a shortest program which computes that function. f-MIN is the set of indices for shortest programs. In 1972, Meyer showed that f-MIN is Turing equivalent to 0'', the halting set with halting set oracle. This paper generalizes the notion of shortest programs, and we use various measures from computability theory to describe the complexity of the resulting "spectral sets." We show that under certain Godel numberings, the spectral sets are exactly the canonical sets 0', 0'', 0''', ... up to Turing equivalence. This is probably not true in general, however we show that spectral sets always contain some useful information. We show that immunity, or "thinness" is a useful characteristic for distinguishing between spectral sets. In the final chapter, we construct a set which neither contains nor is disjoint from any infinite arithmetic set, yet it is 0-majorized and contains a natural spectral set. Thus a pathological set becomes a bit more friendly. Finally, a number of interesting open problems are left for the inspired reader.
dc.descriptionPhD thesis, 101 pages
dc.identifierhttps://arxiv.org/abs/math/0701904
dc.identifierhttp://arxiv.org/abs/math/0701904
dc.identifier.urihttp://salesiana.dossiersoluciones.com/handle/123456789/123060
dc.subjectLogic
dc.subjectLogic in Computer Science
dc.subject03D15; 03D45
dc.titleNoncomputable Spectral Sets
dc.typetext

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