TY - JOUR
T1 - Explicit universal minimal constants for polynomial growth of groups
AU - Lyons, Russell
AU - Mann, Avinoam
AU - Tessera, Romain
AU - Tointon, Matthew
N1 - Publisher Copyright:
© 2022 Walter de Gruyter GmbH, Berlin/Boston 2023.
PY - 2023/1/1
Y1 - 2023/1/1
N2 - Shalom and Tao showed that a polynomial upper bound on the size of a single, large enough ball in a Cayley graph implies that the underlying group has a nilpotent subgroup with index and degree of polynomial growth both bounded effectively. The third and fourth authors proved the optimal bound on the degree of polynomial growth of this subgroup, at the expense of making some other parts of the result ineffective. In the present paper, we prove the optimal bound on the degree of polynomial growth without making any losses elsewhere. As a consequence, we show that there exist explicit positive numbers ϵd such that, in any group with growth at least a polynomial of degree d, the growth is at least ϵdnd . We indicate some applications in probability; in particular, we show that the gap at 1 for the critical probability for Bernoulli site percolation on a Cayley graph, recently proven to exist by Panagiotis and Severo, is at least exp{-exp{17 exp{100 · 8100}}}.
AB - Shalom and Tao showed that a polynomial upper bound on the size of a single, large enough ball in a Cayley graph implies that the underlying group has a nilpotent subgroup with index and degree of polynomial growth both bounded effectively. The third and fourth authors proved the optimal bound on the degree of polynomial growth of this subgroup, at the expense of making some other parts of the result ineffective. In the present paper, we prove the optimal bound on the degree of polynomial growth without making any losses elsewhere. As a consequence, we show that there exist explicit positive numbers ϵd such that, in any group with growth at least a polynomial of degree d, the growth is at least ϵdnd . We indicate some applications in probability; in particular, we show that the gap at 1 for the critical probability for Bernoulli site percolation on a Cayley graph, recently proven to exist by Panagiotis and Severo, is at least exp{-exp{17 exp{100 · 8100}}}.
U2 - 10.1515/jgth-2020-0202
DO - 10.1515/jgth-2020-0202
M3 - Article
AN - SCOPUS:85135021091
SN - 1433-5883
VL - 26
SP - 29
EP - 53
JO - Journal of Group Theory
JF - Journal of Group Theory
IS - 1
ER -