@article{UZKU_2007_149_3_a4,
author = {R. R. Nigmatullin},
title = {Nanonoise: new non-invasive methods to read random sequences quantitatively},
journal = {U\v{c}\"enye zapiski Kazanskogo universiteta. Seri\^a Fiziko-matemati\v{c}eskie nauki},
pages = {71--82},
year = {2007},
volume = {149},
number = {3},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/UZKU_2007_149_3_a4/}
}
TY - JOUR AU - R. R. Nigmatullin TI - Nanonoise: new non-invasive methods to read random sequences quantitatively JO - Učënye zapiski Kazanskogo universiteta. Seriâ Fiziko-matematičeskie nauki PY - 2007 SP - 71 EP - 82 VL - 149 IS - 3 UR - http://geodesic.mathdoc.fr/item/UZKU_2007_149_3_a4/ LA - ru ID - UZKU_2007_149_3_a4 ER -
%0 Journal Article %A R. R. Nigmatullin %T Nanonoise: new non-invasive methods to read random sequences quantitatively %J Učënye zapiski Kazanskogo universiteta. Seriâ Fiziko-matematičeskie nauki %D 2007 %P 71-82 %V 149 %N 3 %U http://geodesic.mathdoc.fr/item/UZKU_2007_149_3_a4/ %G ru %F UZKU_2007_149_3_a4
R. R. Nigmatullin. Nanonoise: new non-invasive methods to read random sequences quantitatively. Učënye zapiski Kazanskogo universiteta. Seriâ Fiziko-matematičeskie nauki, Kazanskii Gosudarstvennyi Universitet. Uchenye Zapiski. Seriya Fiziko-Matematichaskie Nauki, Tome 149 (2007) no. 3, pp. 71-82. http://geodesic.mathdoc.fr/item/UZKU_2007_149_3_a4/
[1] Dyakonov V. P., Veivlety. Ot teorii k praktike, Solon-R, M., 2002, 448 pp.
[2] Chui K., Vvedenie v veivlety, per. s angl., Mir, M., 2001, 416 pp.
[3] Astafeva N. M., “Veivlet-analiz: osnovy teorii i primery primeneniya”, UFN, 166:11 (1998), 1145–1170 | DOI
[4] Novikov I. Ya., Stechkin S. B., “Osnovy teorii vspleskov”, UMN, 53:6 (1998), 53–128 | DOI | MR | Zbl
[5] Novikov L. V., Osnovy veivlet-analiza signalov, Izd-vo OOO “Modus+”, SPb., 1999, 152 pp. | Zbl
[6] Yulmetyev R., Hanggi P., Gafarov F., “Stochastic dynamics of time correlation in complex systems with discrete time”, Phys. Rev. E, 62:5 (2000), 6178–6194 | DOI
[7] Yulmetyev R., Hanggi P., Gafarov F., “Quantification of heart rate variability by discrete nonstationary non-Markov stochastic processes”, Phys. Rev. E, 65 (2002), 046107 | DOI
[8] Yulmetyev R. M., Gafarov F. M., Yulmetyeva D. G., Emelyanova N. A., “Intensity approximation of random fluctuation in complex systems”, Physica A, 303 (2002), 427–438 | DOI | Zbl
[9] Timashev S. F., “A New Dialogue with Nature”, Stochastic and Chaotic Dynamics in the Lakes – STOCHAOS, eds. Broomhead D. S., Luchinskaya E. A., McClintock P. V. E., Mulin T., AIP Conf. Proc., Melville–New York, 2000, 238–243 | MR
[10] Timashev S. F., “Self-Similarity in Nature”, Stochastic and Chaotic Dynamics in the Lakes – STOCHAOS, eds. Broomhead D. S., Luchinskaya E. A., McClintock P. V. E., Mulin T., AIP Conf. Proc., Melville–New York, 2000, 562–566 | MR
[11] Timashev S. F., “Flicker-Noise spectroscopy as a tool for analysis of fluctuations in physical systems in noise in physical systems and 1/$f$ fluctuations”, ICNF-2001, ed. G. Boman, World Scientific, New Jersey–London, 2001, 775–778
[12] Timashev S. F., Polyakov Yu. S., “Review of Flicker Noise Spectroscopy in Electrochemistry”, Fluctuation and Noise Lett., 7:2 (2007), R15–R47 | DOI
[13] Nigmatullin R. R., “Statistika drobnykh momentov: novyi metod kolichestvennogo prochteniya sluchainoi posledovatelnosti”, Uchen. zap. Kazan. un-ta. Ser. Fiz.-mat. nauki, 147, kn. 2 (2005), 129–161 | Zbl
[14] Nigmatullin R. R., “The statistics of the fractional moments: Is there any chance to read “quantitatively” any randomness?”, Signal Processing, 86 (2006), 2529–2547 | DOI | Zbl
[15] Nigmatullin R. R., “Eigen-Coordinates: New method of identification of analytical functions in experimental measurements”, Appl. Magnetic Reson., 14 (1998), 601–633 | DOI
[16] Nigmatullin R. R., “Recognition of nonextensive statistic distribution by the eigen-coordinates method”, Physica A, 285 (2000), 547–565 | DOI | Zbl
[17] Abdul-Gader Jafar M. M., Nigmatullin R. R., “Identification of a new function model for the AC-impedance of thermally evaporated (undoped) selenium films using the eigen-coordinates method”, Thin Solid Films, 396 (2001), 280–294
[18] Nigmatullin R. R., Smith G., “The Generalized Mean Value Function Approach: New Statistical Tool for the Detection of Weak Signals in Spectroscopy”, J. Phys. D: Applied Physics, 38 (2005), 328–337 | DOI
[19] Nigmatullin R. R., Moroz A., Smith G., “Application of the Generalized Mean Value Function to the Statistical Detection of Water in Decane by Near-Infrared Spectroscopy”, Physica A, 352 (2005), 379–396 | DOI
[20] Pershin S. M., Bunkin A. F., Lukyanchenko V. A., Nigmatullin R. R., “Detection of the OH band fine structure in liquid water by means of new treatment procedure based on the statistics of the fractional moments”, Laser Phys. Lett., 4:11 (2007), 808–813 | DOI
[21] Nigmatullin R. R., Arbuzov A. A., Nelson S. O., Trabelsi S., “Dielectric Relaxation of Complex Systems: Quality Sensing and Dielectric Properties of Honeydew Melons from 10 MHZ to 1.8 GHZ”, Journal of Instrumentation, 2006, no. 1, P10002 | DOI
[22] Kendall M. G., Stuart A., The advanced theory of statistics, v. 1, Distribution Theory, Charles Griffin and Co. Ltd, London, 1958, 438 pp.
[23] Elyasberg P. E., Izmeritelnaya informatsiya: skolko ee nuzhno? Kak ee obrabatyvat?, Nauka, M., 1983, 208 pp.
[24] M. Abramovits, I. Stigan(red.), Spravochnik po spetsialnym funktsiyam (s formulami, grafikami i tablitsami), gl. 3, razd. 3.2, Nauka, M., 1979 | MR
[25] Tsallis C., “Nonextensive Statistics: Theoretical, Experimental and Computational Evidences and Connections”, Brazilian Journal of Physics, 29:1 (1999), 1–35 | DOI
[26] Nigmatullin R. R., “Universalnaya funktsiya raspredeleniya fluktuatsii silno korrelirovannykh sistem”, Nelineinyi Mir, 5:9 (2007)
[27] Nigmatullin R. R., “Strongly correlated variables and existence of a universal distribution function for relative fluctuations”, Physics of Wave Phenomena, has been accepted for publication
[28] Nigmatullin R. R., Nad skhvatkoi: Mogut li byt odnovremenno pravy dva “tyazhelovesa” S. E. Shnol i A. M. Khazen?, [Elektronnyi resurs], Rezhim dostupa svodobnyi http://www.sciteclibrary.ru/rus/catalog/arts/
[29] Nigmatullin R. R., Pershin S. M., Sharafutdinov O. B., Sposob markirovki i identifikatsii ob'ekta, Pat. 021456 Rossiiskaya Federatsiya MPK-8: G06K5/04, 7/10, 7/12. No 2007119680; prioritet 29.05.07
[30] Shnol S. E., Kolombet V. A., Pozharskii E. V., Zenchenko T. A., Zvereva I. M., Konradov A. A., “O realizatsii diskretnykh sostoyanii v khode fluktuatsii v makroskopicheskikh protsessakh”, UFN, 168:10 (1998), 1130–1140
[31] Ivanchenko Yu. G., “K voprosu o makroskopicheskikh fluktuatsiyakh pri izmerenii radioaktivnosti”, Biofizika, 34:4 (1989), 732–735
[32] Ivanchenko Yu. G., “Effekt Shnolya” – mify i realnost, [Elektronnyi resurs], Rezhim dostupa svobodnyi http://www.sciteclibrary.ru/rus/catalog/pages/6959.html
[33] Khazen A. M., Fenomen “Chernavskogo – Shnolya” vliyaniya menstruatsii u zhenschin na radioaktivnyi raspad plutoniya 239 i tonkuyu strukturu statisticheskikh raspredelenii kak sledstvie kosmofizicheskikh prichin, [Elektronnyi resurs], Rezhim dostupa svobodnyi 60.htm} http://www.kirsoft/com.ru/intell/KSNews{_
[34] Khazen A. M., O lzhenauke i ob oshibkakh v nauke, [Elektronnyi resurs], Rezhim dostupa svobodnyi 60.htm} http://www.kirsoft/com.ru/intell/KSNews{_