Abstract
Let A, B∈ K[X, Y] be two bivariate polynomials over an effective field K, and let G be the reduced Gröbner basis of the ideal I: = ⟨ A, B⟩ generated by A and B with respect to the usual degree lexicographic order. Assuming A and B sufficiently generic, we design a quasi-optimal algorithm for the reduction of P∈ K[X, Y] modulo G, where “quasi-optimal” is meant in terms of the size of the input A, B, P. Immediate applications are an ideal membership test and a multiplication algorithm for the quotient algebra A: = K[X, Y] / ⟨ A, B⟩ , both in quasi-linear time. Moreover, we show that G itself can be computed in quasi-linear time with respect to the output size.
| Original language | English |
|---|---|
| Pages (from-to) | 509-539 |
| Number of pages | 31 |
| Journal | Applicable Algebra in Engineering, Communication and Computing |
| Volume | 30 |
| Issue number | 6 |
| DOIs | |
| Publication status | Published - 1 Dec 2019 |
Keywords
- Algorithm
- Complexity
- Gröbner basis
- Polynomial reduction
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