Non-leading eigenvalues of the Perron-Frobenius operators for beta-maps
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arXiv
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| Format: | Preprint |
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2024
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| _version_ | 1866912053224013824 |
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| author | Suzuki, Shintaro |
| author_facet | Suzuki, Shintaro |
| contents | We consider the Perron-Frobenius operator defined on the space of functions of bounded variation for the beta-map $τ_β(x)=βx$ (mod $1$), for $β\in(1,\infty)$, and investigate its isolated eigenvalues except $1$, called non-leading eigenvalues in this paper. We show that the set of $β$'s such that the corresponding Perron-Frobenius operator has at least one non-leading eigenvalue is open and dense in $(1,\infty)$. Furthermore, we establish the Hölder continuity of each non-leading eigenvalue as a function of $β$ and show in particular that it is continuous but non-differentiable, whose analogue was conjectured by Flatto et.al. in \cite{Fl-La-Po}. In addition, for an eigenfunctional of the Perron-Frobenius operator corresponding to an isolated eigenvalue, we give an explicit formula for the value of the functional applied to the indicator function of every interval. As its application, we provide three results related to non-leading eigenvalues, one of which states that an eigenfunctional corresponding to a non-leading eigenvalue can not be expressed by any complex measure on the interval, which is contrast to the case of the leading eigenvalue $1$. |
| format | Preprint |
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arxiv_https___arxiv_org_abs_2410_00411 |
| institution | arXiv |
| publishDate | 2024 |
| record_format | arxiv |
| spellingShingle | Non-leading eigenvalues of the Perron-Frobenius operators for beta-maps Suzuki, Shintaro Dynamical Systems 37E05, 37A30, 37A44, 37D20 We consider the Perron-Frobenius operator defined on the space of functions of bounded variation for the beta-map $τ_β(x)=βx$ (mod $1$), for $β\in(1,\infty)$, and investigate its isolated eigenvalues except $1$, called non-leading eigenvalues in this paper. We show that the set of $β$'s such that the corresponding Perron-Frobenius operator has at least one non-leading eigenvalue is open and dense in $(1,\infty)$. Furthermore, we establish the Hölder continuity of each non-leading eigenvalue as a function of $β$ and show in particular that it is continuous but non-differentiable, whose analogue was conjectured by Flatto et.al. in \cite{Fl-La-Po}. In addition, for an eigenfunctional of the Perron-Frobenius operator corresponding to an isolated eigenvalue, we give an explicit formula for the value of the functional applied to the indicator function of every interval. As its application, we provide three results related to non-leading eigenvalues, one of which states that an eigenfunctional corresponding to a non-leading eigenvalue can not be expressed by any complex measure on the interval, which is contrast to the case of the leading eigenvalue $1$. |
| title | Non-leading eigenvalues of the Perron-Frobenius operators for beta-maps |
| topic | Dynamical Systems 37E05, 37A30, 37A44, 37D20 |
| url | https://arxiv.org/abs/2410.00411 |