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$C_{p^n}$-equivariant Mahowald invariants

arXiv Math
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이 매체는 공공·자유 라이선스로 본문을 직접 표시합니다.

Abstract

The classical Mahowald invariant is an operation that systematically produces new elements in the stable homotopy groups of spheres from known ones.

We introduce the $C_{p^n}$-Mahowald invariant: a relation $\pi_\star S_{C_{p^{n-1}}} \rightharpoonup \pi_\ast S$ between the equivariant and classical stable stems which reduces to the classical Mahowald invariant when $n=1$.

We compute the $C_{p^n}$-Mahowald invariants of all elements in the Burnside ring $A(C_{p^{n-1}}) = \pi_0 S_{C_{p^{n-1}}}$, extending Mahowald and Ravenel's computation of $M_{C_p}(p^k)$.

As a consequence, we determine the image of the $C_p$-geometric fixed point map $\Phi^{C_p} : \pi_V S_{C_{p^n}} \to \pi_0 S_{C_{p^n}/C_p} \cong A(C_{p^{n-1}})$ when $V$ is fixed point free, extending classical theorems of Bredon, Landweber, and Iriye for $n=1$.

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