{"title":"Hitting functions for mixed partitions","authors":"A. Dzhalilov, M. Khomidov","doi":"10.35634/vm230201","DOIUrl":null,"url":null,"abstract":"Let $T_{\\rho}$ be an irrational rotation on a unit circle $S^{1}\\simeq [0,1)$. Consider the sequence $\\{\\mathcal{P}_{n}\\}$ of increasing partitions on $S^{1}$. Define the hitting times $N_{n}(\\mathcal{P}_n;x,y):= \\inf\\{j\\geq 1\\mid T^{j}_{\\rho}(y)\\in P_{n}(x)\\}$, where $P_{n}(x)$ is an element of $\\mathcal{P}_{n}$ containing $x$. D. Kim and B. Seo in [9] proved that the rescaled hitting times $K_n(\\mathcal{Q}_n;x,y):= \\frac{\\log N_n(\\mathcal{Q}_n;x,y)}{n}$ a.e. (with respect to the Lebesgue measure) converge to $\\log2$, where the sequence of partitions $\\{\\mathcal{Q}_n\\}$ is associated with chaotic map $f_{2}(x):=2x \\bmod 1$. The map $f_{2}(x)$ has positive entropy $\\log2$. A natural question is what if the sequence of partitions $\\{\\mathcal{P}_n\\}$ is associated with a map with zero entropy. In present work we study the behavior of $K_n(\\tau_n;x,y)$ with the sequence of mixed partitions $\\{\\tau_{n}\\}$ such that $ \\mathcal{P}_{n}\\cap [0,\\frac{1}{2}]$ is associated with map $f_{2}$ and $\\mathcal{D}_{n}\\cap [\\frac{1}{2},1]$ is associated with irrational rotation $T_{\\rho}$. It is proved that $K_n(\\tau_n;x,y)$ a.e. converges to a piecewise constant function with two values. Also, it is shown that there are some irrational rotations that exhibit different behavior.","PeriodicalId":43239,"journal":{"name":"Vestnik Udmurtskogo Universiteta-Matematika Mekhanika Kompyuternye Nauki","volume":null,"pages":null},"PeriodicalIF":0.6000,"publicationDate":"2023-06-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Vestnik Udmurtskogo Universiteta-Matematika Mekhanika Kompyuternye Nauki","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.35634/vm230201","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"MATHEMATICS","Score":null,"Total":0}
引用次数: 0
Abstract
Let $T_{\rho}$ be an irrational rotation on a unit circle $S^{1}\simeq [0,1)$. Consider the sequence $\{\mathcal{P}_{n}\}$ of increasing partitions on $S^{1}$. Define the hitting times $N_{n}(\mathcal{P}_n;x,y):= \inf\{j\geq 1\mid T^{j}_{\rho}(y)\in P_{n}(x)\}$, where $P_{n}(x)$ is an element of $\mathcal{P}_{n}$ containing $x$. D. Kim and B. Seo in [9] proved that the rescaled hitting times $K_n(\mathcal{Q}_n;x,y):= \frac{\log N_n(\mathcal{Q}_n;x,y)}{n}$ a.e. (with respect to the Lebesgue measure) converge to $\log2$, where the sequence of partitions $\{\mathcal{Q}_n\}$ is associated with chaotic map $f_{2}(x):=2x \bmod 1$. The map $f_{2}(x)$ has positive entropy $\log2$. A natural question is what if the sequence of partitions $\{\mathcal{P}_n\}$ is associated with a map with zero entropy. In present work we study the behavior of $K_n(\tau_n;x,y)$ with the sequence of mixed partitions $\{\tau_{n}\}$ such that $ \mathcal{P}_{n}\cap [0,\frac{1}{2}]$ is associated with map $f_{2}$ and $\mathcal{D}_{n}\cap [\frac{1}{2},1]$ is associated with irrational rotation $T_{\rho}$. It is proved that $K_n(\tau_n;x,y)$ a.e. converges to a piecewise constant function with two values. Also, it is shown that there are some irrational rotations that exhibit different behavior.