Masaq Index
arXiv 2001-12-03 0 views

Program schemes with binary write-once arrays and the complexity classes they capture

Stewart, Iain A.

Original · EN

We study a class of program schemes, NPSB, in which, aside from basic assignments, non-deterministic guessing and while loops, we have access to arrays; but where these arrays are binary write-once in that they are initialized to `zero' and can only ever be set to `one'. We show, amongst other results, that: NPSB can be realized as a vectorized Lindstrom logic; there are problems accepted by program schemes of NPSB that are not definable in the bounded-variable infinitary logic Lω∞ω; all problems accepted by the program schemes of NPSB have a zero-one law; and on ordered structures, NPSB captures the complexity class [L][NP]. The class of program schemes NPSB is actually the union of an infinite hierarchy of classes of program schemes. When we amend the semantics of our program schemes slightly, we find that the classes of the resulting hierarchy capture the complexity classes Σᵖᵢ (where i≥ 1) of the Polynomial Hierarchy PH. Finally, we give logical equivalences of the complexity-theoretic question `Does NP equal PSPACE?' where the logics (and classes of program schemes) involved define only problems with zero-one laws (and so do not define some computationally trivial problems).

English translation

This paper has no Arabic translation yet. Be the first: it takes a few seconds, and the result is stored for every future reader.

Security check

Type the characters above

Up to 10 translations per person per day.