●
Goncharov A.S., Iroshnikov N.G.,
Larichev A.V., Nikolaev I.P.,
The impact of speckle
on the measurement of eye aberrations, 2014,
Journal of Modern Optics, № 0, с. 1-6.

●
Ionin A.A., Iroshnikov N.G., Kosareva
O.G., Larichev A.V., Mokrousova D.V., Panov N.A., Seleznev L.V.,
Sinitsyn D.V., Sunchugasheva E.S.,
Filamentation of femtosecond laser pulses governed by variable
wavefront distortions via a deformable mirror, 2013,
J. Opt. Soc. Am. B, Vol. 30, No. 8, pp. 2257-2262.

●
Pankratova Y., Larichev
A., Iroshnikov N.,
Comparison of Iterative Wavefront Estimation Methods,
Optics and Photonics Journal, 2013, No. 3,
pp. 86-89.

●
Goncharov A.S., Iroshnikov N.G., Larichev Andrey V.,
Retinal Imaging:
Adaptive Optics, in Handbook
of Coherent-Domain Optical Methods Biomedical Diagnostics, Tuchin,
Valery V. (Ed.), 2013, Springer Science +
Business (New York, NY, United States), pp 397-434.
●
Andreeva M.S., Iroshnikov N.G., Koryabin A.V., Larichev A.V., Shmalhausen V.I.,
Usage of Wavefront Sensor for Estimation
of Atmospheric Turbulence Parameters, 2012,
Optoelectronics, Instrumentation and Data Processing, 2012, Vol. 48, No.
2, pp. 197–204.

●
Iroshnikov N.G., Koryabin A.V., Larichev A.V., Shmalhausen V.I.,
Andreeva M.S.,
Estimation of atmospheric turbulence parameters with wave front
sensor data, 2012, Proc. of
SPIE Vol. 8696, 86960B.

●
Iroshnikov N.G.,
Larichev A.V., Koryabin A.V.,
Shmal'gauzen V.I.
Express Analysis of
Turbulence Parameters,
Moscow University Physics Bulletin, 2009, V.64, N5, p.
550–554.

●
Gordienko V.M., Koryabin A.V., Kravtsov N.V., Firsov V.V.,
Wind Doppler lidar
with 1.5µm fiber laser,
Laser Physics Letters, 2008
●
Goncharov A.S., Larichev A.V.,
Speckle Structure of a
Light Field Scattered by Human Eye Retina,
Laser Physics, 2007, V.17, N9, p.1157-1165.
●
Goncharov A.S., Larichev A.V.,
Iroshnikov N.G., Ivanov V.Yu.,
Gorbunov S.A.,
Modal tomography of
human eye aberrations,
Laser Physics, 2006, V.16, N12, p.1689.

●
Iroshnikov N.G., Larichev A.V.,
Adaptive optics in
ophthalmology,
Proc. SPIE Vol. 6284, 62840B. Sep 2006.
●
Larichev A.V., Otten J.J., Irochnikov N.G., Soliz P., Erry
G.R.G., Panchenko V.Y.,
Anisoplanatic Effects
in Human Eye Retinal Imaging,
Optical Memory and Neural Networks, 2006, V 15, N1, p.
35-44.
●
Goncharov A.S., Larichev A.V.,
Wave-front sensor
based on phase knife,
Quantum Electronics. Vol. 35, N1, p. 91, Jan. 2005

●
Simonov A.N., Uraev
D.V., Shibaev V.P., Kostromin
S.G.,
Photoreversible optical data recording in films of amorphous azo
dye-containing polymers,
Quantum Electronics, 32 (2002) 143.
●
Simonov A.N.,
Larichev A.V., Shibaev V.P.,
Stakhanov A.I.,
Compensation of Dynamic Phase
Distortions in the Phase Conjugation System
Based on the Film of Azocontaining
Liquid-Crystalline Polymer,
Optics and Spectroscopy, Vol. 92, No. 4, 2002, pp. 536–543.

●
Simonov A.N., Uraev D.V., Kostromin S.G., Shibaev V.P.,
Stakhanov A.I.,
Polarization-controlled optical recording in the films of
azocontaining amorphous polimers,
Laser Physics, 2002. V. 12. P.
1294–1299.
●
A. Larichev, P. Ivanov, I. Irochnikov, V. Shmalhauzen, L.J.Otten,
Adaptive system for eye-fundus imaging,
Quantum Electronics, 32, №10 (2002)

●
Nikolaev I.P.,
Spatial filtering as a method for controlling the structure of
an optical radiation field,
J. of Opt. Technology, 2002, V.69, N7, p. 54-61.
●
Nikolaev I.P., Nesterouk K.S., Larichev A.V., Wataghin V.,
Analytical description of the
effect of laser radiation on optical properties of amorphous
azo-containing polymers,
Laser Physics, 12 (2002) 978.

●
Larichev A.V., Ivanov P.V., Iroshnikov N.G., Shmalhausen V. I.,
Measurement of Eye Aberrations
in a Speckle Field, Quantum
Electronics, 31 (2001) 1108.

●
Larichev A.V., Ivanov P.V., Iroshnikov N.G., Nemeth S.C.,
Edwards A., Soliz P.,
High Speed Measurement of Human Eye Aberrations with
Shack-Hartman Sensor,
Invest Ophthalmol Vis Sci., 42 (2001) 897.
●
Simonov A.N., Andreeva
M.S., Shmalhausen V.I., Shibaev
V.P.,
Dynamics of two-wave interaction in azocontaining photosensitive
liquid crystalline polymer,
Quantum Electronics, 31 (2001) 599
●
Andreeva M.S., Shmalhausen
V.I., Simonov A.N.,
Two-wave coupling in azo-containing photosensitive polymers with
liquid crystal properties,
SPIE proceedings, 4750 (2001) 247
●
Simonov A.N., Larichev
A.V., Shibaev V.P., Stakhanov
A.I.,
High-quality correction of wavefront distortions using low-power
phase conjugation in azo dye containing LC polymer,
Optics Comm., 197 (2001) 175.
●
Nesteruk K.S., Nikolaev I.P.,
Larichev A.V.,
Image
differentiation with the aid of a phase knife,
Optics and Spectroscopy, 91 (2001) 295

●
Nikolaev I.P., Larichev A.V., Degtiarev E.V., Wataghin V.,
An optical feedback nonlinear
system with a Takens-Bogdanov point: experimental investigation,
Physica D. 144 (2000) 221.
●
Shmalhausen V.I., Yaitskova N.A.,
Multireference Adaptive Optics
and Field-of-view widening problem,
Proc. of SPIE 4338 (2000) 97.
●
Nikolaev I.P., Larichev A.V., Shmalhauzen V.I.,
Controlled optical structures in a nonlinear system involving
the suppression of low spatial frequencies in the feedback loop,
Quantum. Electron. 30 (2000) 617.
●
Larichev A., Irochnikov
N., Nikolaev I., Nesterouk
K., Kudryashov A.,
Depth-sensitive adaptive deconvolution of retinal images,
Proc. SPIE 4162 (2000) 158.
●
Nikolaev I.P., Larichev A.V., Wataghin V., Degtiarev E.V.,
Peirolo R.,
Experimental observation of steady and drifting roll patterns in
a nonlinear optical system near a codimension-two point,
Opt. Comm. 159 (1999) 184.

●
Ivanov P.V., Koryabin
A.V., Shmalhauzen V.I.,
Wavefront-shearing interferometer in an adaptive system with
optical feedback, Quantum
Electronics, 29 (1999) 360.
●
Larichev A.V., Nikolaev I.P., Violino P.,
LCLV-based system for high-resolution wavefront correction:
phase knife as a feedback intensity producer,
Opt. Comm, 138 (1997) 138 127.
●
Kudryashov A.V., Shmalhausen V.I.,
Semipassive bimorph flexible
mirrors for atmospheric adaptive optics applications,
Optical Engineering 35 (1996) 3064.

●
Larichev A.V., Nikolaev I.P., Chulichkov A.L.,
Spatiotemporal period doubling
in a nonlinear interferometer with distributed optical feedback,
Opt. Lett. 21 (1996) 1180.
●
Ramazza P.L., Residori S.,
Pamapaloni E., Larichev A.V.,
Transition to space-time chaos
in a nonlinear optical system with two-dimensional feedback,
Phys.Rev.A., 53 (1996) 400.

●
Larichev A.V., Nikolaev I.P., Costamagna S., Violino P.,
Advanced phase knife technique,
Optics Comm. 121 (1995) 95.
●
Arecchi F.T., Larichev A.V.,
Ramazza P.L., Residori S.,
Ricklin J.C., Vorontsov M.A.,
Experimental observation of a
space-time chaos in a nonlinear optical system with 2D feedback,
Optics Comm., 117 (1995) 492.

●
Arecchi F.T., Larichev A.V.,
Vorontsov M.A.,
Polygon pattern formation in a
nonlinear optical system with 2D feedback,
Optics Comm., 105 (1994) 297.
●
Larichev A.V., Arecchi F.T.,
Spatio-temporal behaviour of a
bistable optical system with global feedback,
Optics Comm., 113 (1994) 53.
●
Akhmanov S.A., Vorontsov M.A., Ivanov V.Y., Larichev A.V.,
Zheleznykh N.I.,
Controlling transverse wave
interactions in nonlinear optics: generation and interaction of
space-time structures, J.
Opt. Soc. Am. B. 9 (1992) 78.

●
Vorontsov M. A., Koryabin A. V., Shmalhausen V. I.,
Controlled Optical Systems,
Moscow, Nauka (1988) 275.
●
Vorontsov M. A, Shmalhausen V. I.,
Principles of Adaptive Optics,
Moscow, Nauka (1985) 336.
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