Finite racks and quandles are shown to have Burnside rings whose additive basis is the connected racks, with separating marks and links to crossed Burnside rings and Dress-Siebeneicher theory.
Arithmetic Kei Theory
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abstract
A kei, or 2-quandle, is an algebraic structure one can use to produce a numerical invariant of links, known as coloring invariants. Motivated by Mazur's analogy between prime numbers and knots, we define for every finite kei $\mathcal{K}$ an analogous coloring invariant $\textrm{col}_{\mathcal K}(n)$ of square-free integers. This is achieved by defining a fundamental kei for every such $n$. We conjecture that the asymptotic average order of $\textrm{col}_{\mathcal K}$ can be predicted to some extent by the colorings of random braid closures. This conjecture is fleshed out in general, building on previous work, and then proven for several cases.
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Burnside rings for racks and quandles
Finite racks and quandles are shown to have Burnside rings whose additive basis is the connected racks, with separating marks and links to crossed Burnside rings and Dress-Siebeneicher theory.