S. A. Kishkin, S. P. Kotova, “Discretization of a mathematical model for image analysis based on the optics of spiral beams”, Computer Optics, 48:2 (2024), 204–209
2022
2.
A. V. Korobtsov, S. P. Kotova, N. N. Losevskii, A. M. Maiorova, S. A. Samagin, “Ring optothermic trap”, Kvantovaya Elektronika, 52:9 (2022), 856–861 [Bull. Lebedev Physics Institute, 50:suppl. 1 (2023), S105–S113]
E. P. Pozhidaev, S. P. Kotova, S. A. Samagin, “Ferrielectric liquid crystal with a subwavelength helix pitch as an electrooptical medium for phase spatial light modulators”, Kvantovaya Elektronika, 52:9 (2022), 843–849 [Bull. Lebedev Physics Institute, 50:suppl. 1 (2023), S85–S95]
I. Yu. Eremchev, D. V. Prokopova, N. N. Losevskii, I. T. Mynzhasarov, S. P. Kotova, A. V. Naumov, “Three-dimensional fluorescence nanoscopy of single quantum emitters based on the optics of spiral light beams”, UFN, 192:6 (2022), 663–673; Phys. Usp., 65:6 (2022), 617–626
D. A. Turaikhanov, A. V. Shkalikov, A. A. Kalachev, I. R. Imangulova, N. N. Losevskii, E. V. Razueva, S. A. Samagin, S. P. Kotova, “The formation of single-photon IR wave packets with an orbital angular momentum using vortex phase plates”, Optics and Spectroscopy, 126:1 (2019), 33–36; Optics and Spectroscopy, 126:1 (2019), 25–28
6.
S. P. Kotova, A. M. Maiorova, S. A. Samagin, “The possibility of forming two-lobe vortex light fields using a modified liquid-crystal focusator”, Optics and Spectroscopy, 126:1 (2019), 18–23; Optics and Spectroscopy, 126:1 (2019), 10–15
V. G. Volostnikov, S. A. Kishkin, S. P. Kotova, M. S. Rusakova, “On the feasibility of using the spiral beam formalism for analysis of cardiograms”, Kvantovaya Elektronika, 49:1 (2019), 83–88 [Quantum Electron., 49:1 (2019), 83–88]
V. G. Volostnikov, S. A. Kishkin, S. P. Kotova, “Analysis of contour images using optics of spiral beams”, Kvantovaya Elektronika, 48:3 (2018), 268–274 [Quantum Electron., 48:3 (2018), 268–274]
V. G. Volostnikov, S. A. Kishkin, S. P. Kotova, “Contour analysis and modern optics of Gaussian beams”, Computer Optics, 38:3 (2014), 476–481
10.
A. V. Korobtsov, S. P. Kotova, N. N. Losevskii, A. M. Maiorova, S. A. Samagin, “Formation of contour optical traps using a four-channel liquid crystal focusing device”, Kvantovaya Elektronika, 44:12 (2014), 1157–1164 [Quantum Electron., 44:12 (2014), 1157–1164]
V. G. Volostnikov, S. A. Kishkin, S. P. Kotova, “New method of contour image processing based on the formalism of spiral light beams”, Kvantovaya Elektronika, 43:7 (2013), 646–650 [Quantum Electron., 43:7 (2013), 646–650]
S. P. Kotova, V. V. Patlan', S. A. Samagin, “Tunable liquid-crystal focusing device. 2. Experiment”, Kvantovaya Elektronika, 41:1 (2011), 65–70 [Quantum Electron., 41:1 (2011), 65–70]
S. P. Kotova, V. V. Patlan', S. A. Samagin, “Tunable liquid-crystal focusing device. 1. Theory”, Kvantovaya Elektronika, 41:1 (2011), 58–64 [Quantum Electron., 41:1 (2011), 58–64]
N. A. Klimov, S. P. Kotova, S. A. Samagin, M. Yu. Kvashnin, G. V. Vdovin, M. Yu. Loktev, “Modal liquid-crystal wavefront corrector on a ceramic substrate: the single-contact approximation”, Kvantovaya Elektronika, 37:12 (2007), 1169–1175 [Quantum Electron., 37:12 (2007), 1169–1175]
S. P. Kotova, I. V. Maiorov, A. M. Maiorova, “Application of neural networks for determining optical parameters of strongly scattering media from the intensity profile of backscattered radiation”, Kvantovaya Elektronika, 37:1 (2007), 22–26 [Quantum Electron., 37:1 (2007), 22–26]
2002
16.
V. G. Volostnikov, S. P. Kotova, N. N. Losevskii, M. A. Rakhmatulin, “Microobject manipulation by laser beams with a nonzero orbital momentum”, Kvantovaya Elektronika, 32:7 (2002), 565–566 [Quantum Electron., 32:7 (2002), 565–566]
G. V. Vdovin, I. R. Guralnik, S. P. Kotova, M. Yu. Loktev, A. F. Naumov, “Liquid-crystal lenses with a controlled focal length. II. Numerical optimisation and experiments”, Kvantovaya Elektronika, 26:3 (1999), 261–264 [Quantum Electron., 29:3 (1999), 261–264]
G. V. Vdovin, I. R. Guralnik, S. P. Kotova, M. Yu. Loktev, A. F. Naumov, “Liquid-crystal lenses with a controlled focal length. I. Theory”, Kvantovaya Elektronika, 26:3 (1999), 256–260 [Quantum Electron., 29:3 (1999), 256–260]
A. M. Ivanova, S. P. Kotova, N. L. Kupriyanov, A. L. Petrov, E. Yu. Tarasova, I. V. Shishkovskó, “Physical characteristics of selective laser sintering of metal–polymer powder composites”, Kvantovaya Elektronika, 25:5 (1998), 433–438 [Quantum Electron., 28:5 (1998), 420–425]
S. P. Kotova, A. K. Chernyshov, G. N. Chernyshova, “Effect of astigmatism on the matching of a laser diode to an external cavity”, Kvantovaya Elektronika, 20:5 (1993), 509–512 [Quantum Electron., 23:5 (1993), 441–443]
1979
21.
A. A. Vasil'ev, S. P. Kotova, V. N. Morozov, “Pseudorandom signals as key words in an associative holographic memory”, Kvantovaya Elektronika, 6:11 (1979), 2442–2444 [Sov J Quantum Electron, 9:11 (1979), 1440–1441]
A. A. Vasil'ev, A. I. Zhindulis, I. N. Kompanets, S. P. Kotova, V. N. Silyukov, A. G. Sobolev, “Optically controlled transparency in the form of a ferroelectric ceramic–photoconductor structure”, Kvantovaya Elektronika, 6:6 (1979), 1289–1295 [Sov J Quantum Electron, 9:6 (1979), 757–761]
1978
23.
A. A. Vasil'ev, I. N. Kompanets, S. P. Kotova, V. N. Morozov, “Associative access to data in holographic memories with controlled transparencies”, Kvantovaya Elektronika, 5:6 (1978), 1298–1304 [Sov J Quantum Electron, 8:6 (1978), 740–743]