The Pop-stack-sorting Operator on Tamari Lattices
Abstract: Motivated by the pop-stack-sorting map on the symmetric groups, Defant defined an operator $\mathsf{Pop}M : M \to M$ for each complete meet-semilattice $M$ by $$\mathsf{Pop}_M(x)=\bigwedge({y\in M: y\lessdot x}\cup {x}).$$ This paper concerns the dynamics of $\mathsf{Pop}{\mathrm{Tam}n}$, where $\mathrm{Tam}_n$ is the $n$-th Tamari lattice. We say an element $x\in \mathrm{Tam}_n$ is $t$-$\mathsf{Pop}$-sortable if $\mathsf{Pop}_Mt (x)$ is the minimal element and we let $h_t(n)$ denote the number of $t$-$\mathsf{Pop}$-sortable elements in $\mathrm{Tam}_n$. We find an explicit formula for the generating function $\sum{n\ge 1}h_t(n)zn$ and verify Defant's conjecture that it is rational. We furthermore prove that the size of the image of $\mathsf{Pop}_{\mathrm{Tam}_n}$ is the Motzkin number $M_n$, settling a conjecture of Defant and Williams.
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