Critical LIL behavior of the trigonometric system

Author:

Berkes I.

Abstract

It is a classical fact that for rapidly increasing ( n k ) ({n_k}) the sequence ( cos n k x ) (\cos {n_k}x) behaves like a sequence of i.i.d. random variables. Actually, this almost i.i.d. behavior holds if ( n k ) ({n_k}) grows faster than e c k {e^{c\sqrt k }} ; below this speed we have strong dependence. While there is a large literature dealing with the almost i.i.d. case, practically nothing is known on what happens at the critical speed n k e c k {n_k} \sim {e^{c\sqrt k }} (critical behavior) and what is the probabilistic nature of ( cos n k x ) (\cos {n_k}x) in the strongly dependent domain. In our paper we study the critical LIL behavior of ( cos n k x ) (\cos {n_k}x) i.e., we investigate how classical fluctuational theorems like the law of the iterated logarithm and the Kolmogorov-Feller test turn to nonclassical laws in the immediate neighborhood of n k e c k {n_k} \sim {e^{c\sqrt k }} .

Publisher

American Mathematical Society (AMS)

Subject

Applied Mathematics,General Mathematics

Reference21 articles.

1. N. K. Bary, A treatise on trigonometric series, Pergamon, New York, London, and Paris, 1964.

2. On the central limit theorem for lacunary trigonometric series;Berkes, I.;Anal. Math.,1978

3. Non-Gaussian limit distributions of lacunary trigonometric series;Berkes, I.;Canad. J. Math.,1991

4. A note on lacunary trigonometric series;Berkes, I.;Acta Math. Hungar.,1991

5. Some results on the almost sure behavior of martingales;Einmahl, Uwe,1990

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