40 citations to https://www.mathnet.ru/rus/sm449
  1. L. -E. Persson, F. Schipp, G. Tephnadze, F. Weisz, Trends in Mathematics, 3, Extended Abstracts 2021/2022, 2024, 157  crossref
  2. Kopaliani T. Samashvili N. Zviadadze Sh., “Divergent Fourier Series in Function Spaces Near l-1- [0;1]”, J. Math. Anal. Appl., 505:2 (2022), 125558  crossref  isi
  3. Lars-Erik Persson, George Tephnadze, Ferenc Weisz, Martingale Hardy Spaces and Summability of One-Dimensional Vilenkin-Fourier Series, 2022, 71  crossref
  4. L.-E. Persson, F. Schipp, G. Tephnadze, F. Weisz, “An Analogy of the Carleson–Hunt Theorem with Respect to Vilenkin Systems”, J Fourier Anal Appl, 28:3 (2022)  crossref
  5. Oniani G., “On Sjolin-Soria-Antonov Type Extrapolation For Locally Compact Groups and a.E. Convergence of Vilenkin-Fourier Series”, Acta Math. Hung., 163:2 (2021), 429–436  crossref  mathscinet  isi
  6. Goginava U., Oniani G., “On the Divergence of Subsequences of Partial Walsh-Fourier Sums”, J. Math. Anal. Appl., 497:2 (2021), 124900  crossref  isi
  7. Singh P., “Novel Generalized Fourier Representations and Phase Transforms”, Digit. Signal Prog., 106 (2020), 102830  crossref  isi
  8. Getsadze R., “On the Divergence of Double Fourier-Walsh-Paley Series of Continuous Functions”, Acta Sci. Math., 86:1-2 (2020), 287–302  crossref  mathscinet  isi
  9. Lie V., “The Polynomial Carleson Operator”, Ann. Math., 192:1 (2020), 47–163  crossref  mathscinet  isi
  10. Lie V., “The Pointwise Convergence of Fourier Series (II). Strong l(1)Case For the Lacunary Carleson Operator”, Adv. Math., 357 (2019), 106831  crossref  mathscinet  zmath  isi
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