
arXiv: 0910.3563
Motivated by recent works of Sun and Tauraso, we prove some variations on the Green-Krammer identity involving central q-binomial coefficients, such as $$ \sum_{k=0}^{n-1}(-1)^kq^{-{k+1\choose 2}}{2k\brack k}_q \equiv (\frac{n}{5}) q^{-\lfloor n^4/5\rfloor} \pmod{Φ_n(q)}, $$ where $\big(\frac{n}{p}\big)$ is the Legendre symbol and $Φ_n(q)$ is the $n$th cyclotomic polynomial. As consequences, we deduce that $$ \sum_{k=0}^{3^a m-1} q^{k}{2k\brack k}_q &\equiv 0 \pmod{(1-q^{3^a})/(1-q)}, \sum_{k=0}^{5^a m-1}(-1)^kq^{-{k+1\choose 2}}{2k\brack k}_q &\equiv 0 \pmod{(1-q^{5^a})/(1-q)}, $$ for $a,m\geq 1$, the first one being a partial q-analogue of the Strauss-Shallit-Zagier congruence modulo powers of 3. Several related conjectures are proposed.
16 pages, detailed proofs of Theorems 4.1 and 4.3 are added, to appear in Adv. Appl. Math
Central binomial coefficients, Mathematics - Number Theory, Applied Mathematics, congruence, central binomial coefficients, [MATH.MATH-NT]Mathematics [math]/Number Theory [math.NT], 510, 004, Congruence, Binomial coefficients; factorials; \(q\)-identities, [MATH.MATH-CO]Mathematics [math]/Combinatorics [math.CO], q-Binomial coefficient, FOS: Mathematics, Cyclotomic polynomial, Mathematics - Combinatorics, 11B65, 11A07, 05A10, Congruences; primitive roots; residue systems, cyclotomic polynomial, Number Theory (math.NT), Combinatorics (math.CO), \(q\)-binomial coefficient
Central binomial coefficients, Mathematics - Number Theory, Applied Mathematics, congruence, central binomial coefficients, [MATH.MATH-NT]Mathematics [math]/Number Theory [math.NT], 510, 004, Congruence, Binomial coefficients; factorials; \(q\)-identities, [MATH.MATH-CO]Mathematics [math]/Combinatorics [math.CO], q-Binomial coefficient, FOS: Mathematics, Cyclotomic polynomial, Mathematics - Combinatorics, 11B65, 11A07, 05A10, Congruences; primitive roots; residue systems, cyclotomic polynomial, Number Theory (math.NT), Combinatorics (math.CO), \(q\)-binomial coefficient
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