Interference-based logic gates
Doklady Rossijskoj akademii nauk. Matematika, informatika, processy upravleniâ, Tome 493 (2020), pp. 68-73 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

Interference-based logic gates serve as a basis for photonic computers intended (as distinct from quantum computers) for the same class of problems as electronic computers and making it possible to increase performance irrespective of the limitations inherent in electronic technologies. The proposed interference-based logic gates represent a complete basic functional set. They meet the requirement for the identity of intensity values corresponding to logic constants “0” and “1”. A method for intensity scaling is developed. Parameters of interference-based logic gates are estimated, and the advantages of such gates over their electronic counterparts are demonstrated.
Keywords: interference-based logic gates, digital photonic devices.
@article{DANMA_2020_493_a13,
     author = {S. A. Stepanenko},
     title = {Interference-based logic gates},
     journal = {Doklady Rossijskoj akademii nauk. Matematika, informatika, processy upravleni\^a},
     pages = {68--73},
     year = {2020},
     volume = {493},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/DANMA_2020_493_a13/}
}
TY  - JOUR
AU  - S. A. Stepanenko
TI  - Interference-based logic gates
JO  - Doklady Rossijskoj akademii nauk. Matematika, informatika, processy upravleniâ
PY  - 2020
SP  - 68
EP  - 73
VL  - 493
UR  - http://geodesic.mathdoc.fr/item/DANMA_2020_493_a13/
LA  - ru
ID  - DANMA_2020_493_a13
ER  - 
%0 Journal Article
%A S. A. Stepanenko
%T Interference-based logic gates
%J Doklady Rossijskoj akademii nauk. Matematika, informatika, processy upravleniâ
%D 2020
%P 68-73
%V 493
%U http://geodesic.mathdoc.fr/item/DANMA_2020_493_a13/
%G ru
%F DANMA_2020_493_a13
S. A. Stepanenko. Interference-based logic gates. Doklady Rossijskoj akademii nauk. Matematika, informatika, processy upravleniâ, Tome 493 (2020), pp. 68-73. http://geodesic.mathdoc.fr/item/DANMA_2020_493_a13/

[1] Stepanenko S.A., “Fotonnaya vychislitelnaya mashina. Printsipy realizatsii. Otsenki parametrov”, DAN, 476:4 (2017), 389–394 | Zbl

[2] Belov P.A., Bespalov V.G., Vasilev V.N. i dr., Opticheskie protsessory: dostizheniya i novye idei, http://pandia.ru/77/192/21190.php

[3] Poluektov A.O., Opticheskii logicheskii element, Patent RF 20751061. Opublikovan 10.03.1997

[4] Sun Syao-Ven, Yan Syu-Lun, Men Syan-Fen, Chzhu Tszi-Nan, Van Yui-Zhun, In Yun-Kai, Dun Go-Yan, “Razrabotka i analiz logicheskikh elementov “ILI-NE”, “I-NE” i “isklyuchayuschee ILI-NE” na osnove effekta interferentsii”, Kvantovaya elektronika, 48:2 (2018), 178–183

[5] Xiaoting Wu, Jinping Tian, Rongcao Yang, “A Type of All-Optical Logic Gate Base on Graphene Surface Plasmon Polaritons”, Optics Communications, 403 (2017), 185–192 | DOI

[6] Papaioannou M., Plum E., Valente J., Rogers E.T.F., Zheludev N.I., “All-Optical Multichannel Logic Based on Coherent Perfect Absorption in a Plasmonic Metamaterial”, APL PHOTONICS, 2016, no. 1, 090801 | DOI

[7] Hussein M.E., Tamer A.Ali, Nadia H.Rafab., “New Design of a Complete Set of Photonic Crystals Logic Gates”, Optics Communications, 411 (2018), 175–181 | DOI

[8] Yavorskii B.M., Detlaf A.A., Lebedev A.K., Spravochnik po fizike dlya inzhenerov i studentov vuzov, OOO “Izdatelstvo Oniks”: OOO “Izdatelstvo "Mir i Obrazovanie”, M., 2008, 1056 pp.

[9] Nikanorov N.V., Shandarov S.M., Volnovodnaya fotonika, ITMO, SPb, 2008

[10] Verbovetskii A.A., Osnovy proektirovaniya optoelektronnykh sistem svyazi, Radio i svyaz, M., 2000

[11] Pospelov D.A., Logicheskie metody analiza i sinteza skhem, Energiya, M., 1974, 368 pp.

[12] Salekh B., Teikh M., Optika i fotonika. Printsipy i primeneniya, v. 1, 2, Intellekt, Dolgoprudnyi, 2012

[13] Kotlyar V.V., “Nanofotonika - manipulirovanie svetom s pomoschyu nanostruktur”, Kompyuternaya optika, 32:2 (2008), 119–135

[14] Gallais L., Douti D.-B., Commandre M., Bataviciute G., “Wavelength Dependence of Femtosecond Laser-Induced Damage Threshold of Optical Materials”, J. Appl. Physics, 117 (2015), 223103, 6 pp. | DOI

[15] Goncharova O.V., Demin A.V., Opticheskii pereklyuchayuschii element, Patent RF 2096815, opublikovan 20.11.1997