2015
DOI: 10.1016/j.jnt.2014.12.014
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Pair correlation of fractional parts derived from rational valued sequences

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Cited by 8 publications
(10 citation statements)
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“…Another case which has been intensively investigated is that of { αa(x) } x≥1 for {a(x)} x≥1 being a lacunary sequence, see for example [5,11,31]. For brevity we will say a sequence {a(x)} x≥1 has the metric pair correlation property if { αa(x) } x≥1 has asymptotically Poissonian pair correlations for almost all α.…”
Section: Introductionmentioning
confidence: 99%
“…Another case which has been intensively investigated is that of { αa(x) } x≥1 for {a(x)} x≥1 being a lacunary sequence, see for example [5,11,31]. For brevity we will say a sequence {a(x)} x≥1 has the metric pair correlation property if { αa(x) } x≥1 has asymptotically Poissonian pair correlations for almost all α.…”
Section: Introductionmentioning
confidence: 99%
“…However, for any polynomial p ∈ Z[x] of degree at least 2, the pair correlation of (p(n)α) n is Poissonian for almost all α. For related results, see for example [6,12,36].…”
Section: Introduction and Statement Of Resultsmentioning
confidence: 99%
“…Very little is known in the metric theory of pair correlation of sequences (x n α) n when (x n ) n is a sequence of reals rather than integers. One step in this general direction is [12], where (x n ) n is allowed to take rational values and the results obtained depend on the size of the denominators of these rationals. A general result was obtained recently in [34], where the authors gave a criterion formulated in terms of the number of solutions of a certain Diophantine inequality.…”
Section: Introduction and Statement Of Resultsmentioning
confidence: 99%
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“…A generalization from ({n d α}) n≥1 to the case of ({a(n)α}) n≥1 with a(x) ∈ Z[x] is obtained in [6]; again the pair correlations are asymptotically Poissonian for almost all α, provided that the degree of a(x) is at least 2. Another case which has been intensively investigated is that of ({a(n)α}) n≥1 for (a(n)) n≥1 being a lacunary sequence; see for example [3,11,22].…”
Section: Introductionmentioning
confidence: 99%