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Publications by M.A. (Maxim) Yurkin

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1 M.A. Yurkin; M. Min and A.G. Hoekstra: Application of the discrete dipole approximation to very large refractive indices: Filtered coupled dipoles revived, Physical Review. E Statistical Nonlinear and Soft Matter Physics, vol. 82, nr 3 pp. 036703+12. 2010. (DOI: 10.1103/PhysRevE.82.036703)
2 M.A. Yurkin; D. de Kanter and A.G. Hoekstra: Accuracy of the discrete dipole approximation for simulation of optical properties of gold nanoparticles, Journal of Nanophotonics, vol. 4, pp. 041585+15. SPIE, 2010. (DOI: 10.1117/1.3335329)
3 M.A. Yurkin; D. de Kanter and A.G. Hoekstra: Accuracy of the discrete dipole approximation for gold nanoparticles, in M.I. Mishchenko; Y. Yatskiv; V.K. Rosenbush and G. Videen, editors, NATO Advanced Study Institute on "Special Detection Technique (Polarimetry) and Remote Sensing", (Abstract) pp. 118-118. Nato, Kyiv, Ukraine, September 2010.
4 M.A. Yurkin; O.M. Yurkina and A.G. Hoekstra: Features and capabilities of the discrete dipole approximation code ADDA, in M.I. Mishchenko; Y. Yatskiv; V.K. Rosenbush and G. Videen, editors, NATO ASI on Special Detection Technique (Polarimetry) and Remote Sensing, (abstract) pp. 119-119. Nato, September 2010.
5 D.I. Strokotov; M.A. Yurkin; K.V. Gilev; D.R. van Bockstaele; A.G. Hoekstra; N.B. Rubtsov and V.P. Maltsev: Is there a difference between T- and B-lymphocyte morphology?, Journal of Biomedical Optics, vol. 14, nr 6 pp. 064036+12. SPIE, 2009. (DOI: 10.1117/1.3275471)
6 D.Y. Orlova; M.A. Yurkin; A.G. Hoekstra and V.P. Maltsev: Light scattering by neutrophils: model, simulation, and experiment, Journal of Biomedical Optics, vol. 13, nr 5 pp. 054057+7. September 2008. (DOI: 10.1117/1.2992140)
7 M.A. Yurkin; M. Min and A.G. Hoekstra: Application of the discrete dipole approximation to extreme refractive indices: filtered coupled dipoles revived, in Proceedings of the 11th Conference on Electromagnetic and Light Scattering, (extended abstract) 11th Electromagnetic & Light Scattering Conference (els-XI), Hatfield, UK, pp. 109-112. University of Hertfordshire, 2008.
8 M.A. Yurkin; D. de Kanter and A.G. Hoekstra: Study of light scattering by a granulated coated sphere - a model of granulated blood cells, in Proceedings of the 11th Conference on Electromagnetic and Light Scattering, (extended abstract) 11th Electromagnetic & Light Scattering Conference (els-XI), Hatfield, UK, pp. 299-302. University of Hertfordshire, 2008.
9 A. Penttilä; E. Zubko; K. Lumme; K. Muinonen; M.A. Yurkin; B.T. Draine; J. Rahola; A.G. Hoekstra and Y. Shkuratov: Comparison between discrete dipole implementations and exact techniques, J. Quant. Spectr. Rad. Transf., vol. 106, pp. 417-436. 2007. (DOI: 10.1016/j.jqsrt.2007.01.026)
10 K.A. Semyanov; A.E. Zharinov; P.A. Tarasov; M.A. Yurkin; I.G. Skribunov; D.R. van Bockstaele; A.G. Hoekstra and V.P. Maltsev: Optics of leucocytes, in A.G. Hoekstra; V.P. Maltsev and G. Videen, editors, Optics of Biological Particles, pp. 253-264. Springer, London, 2007. ISBN 978-1-4020-5501-0.
11 K.A. Semyanov; P.A. Tarasov; M.A. Yurkin; A.G. Hoekstra and V.P. Maltsev: Characterization of native red blood cell morphology by scanning flow cytometry, in 8th International Congress on Optical Particle Characterization, pp. 56. Graz, Austria, July 2007.
12 P.A. Tarasov; M.A. Yurkin; P.A. Avrorov; K.A. Semyanov; A.G. Hoekstra and V.P. Maltsev: Optics of erythrocytes, in A.G. Hoekstra; V.P. Maltsev and G. Videen, editors, Optics of Biological Particles, pp. 231-246. Springer, London, 2007. ISBN 978-1-4020-5501-0.
13 M.A. Yurkin; K.A. Semyanov; V.P. Maltsev and A.G. Hoekstra: Light scattering by granulated spheres applied to discriminate subtypes of granulated blood cells, in International Conference on Laser Applications in Life Sciences 2007, (abstract) pp. TuL07-II-3. Moscow, Russia, June 2007.
14 M.A. Yurkin; A.G. Hoekstra; R.S. Brock and J.Q. Lu: Systematic comparison of the discrete dipole approximation and the finite difference time domain method for large dielectric scatterers, Optics Express, vol. 15, nr 26 pp. 17902-17911. Dec 2007.
15 M.A. Yurkin: Current capabilities of the discrete dipole approximation for very large particles: speed, accuracy, and computational tricks, in T. Wriedt and A.G. Hoekstra, editors, Proceedings of the DDA - Workshop, pp. 31-33. Bremen, Germany, March 2007.
16 M.A. Yurkin: The Amsterdam DDA (tutorial), in T. Wriedt and A.G. Hoekstra, editors, Proceedings of the DDA - Workshop, pp. 30+1. Bremen, Germany, March 2007.
17 M.A. Yurkin; A.G. Hoekstra; R.S. Brock and J.Q. Lu: Systematic comparison of the discrete dipole approximation and the finite difference time domain method, in The 10th Conference on Electromagnetic and Light Scattering, pp. 249-252. Bodrum, Turkey, June 2007.
18 M.A. Yurkin; K.A. Semyanov; V.P. Maltsev and A.G. Hoekstra: Discrimination of granulocyte subtypes from light scattering: theoretical analysis using a granulated sphere model, Optics Express, vol. 15, nr 25 pp. 16561-16580. 2007.
19 M.A. Yurkin; V.P. Maltsev and A.G. Hoekstra: The discrete dipole approximation for simulation of light scattering by particles much larger than the wavelength, J. Quant. Spectr. Rad. Transf., vol. 106, pp. 546-557. 2007.
20 M.A. Yurkin: Discrete dipole simulations of light scattering by blood cells, PhD thesis, Universiteit van Amsterdam, (Promotor: Prof. Dr. P.M.A. Sloot, Co-promotor: Dr. A.G. Hoekstra) December 2007.
21 M.A. Yurkin and A.G. Hoekstra: The discrete dipole approximation: an overview and recent developments, J. Quant. Spectr. Rad. Transf., vol. 106, pp. 558-589. 2007.
22 I.V. Kolesnikova; S.V. Potapov; M.A. Yurkin; A.G. Hoekstra; V.P. Maltsev and K.A. Semyanov: Determination of volume, shape and refractive index of individual blood platelets, J. Quant. Spectr. Rad. Transf., vol. 102, nr 1 pp. 37-45. Nov. 2006.
23 M. Min; J.W. Hovenier; C. Dominik; A. de Koter and M.A. Yurkin: Absorption and scattering properties of arbitrarily shaped particles in the Rayleigh domain: A rapid computational method and a theoretical foundation for the statistical approach, J. Quant. Spectr. Rad. Transf., vol. 97, nr 2 pp. 161-180. 2006. (DOI: 10.1016/j.jqsrt.2005.05.059)
24 A. Penttilä; E. Zubko; K. Lumme; K. Muinonen; M.A. Yurkin; Y. Shkuratov and A.G. Hoekstra: Comparison between discrete dipole and exact techniques, in Proceedings of the 9th Conference on Electromagnetic and Light Scattering by Nonspherical Particles: Theory, Measurement and Applications, pp. 227-230. St.Petersburg,Russia, June 2006. ISBN 5-9651-0210-0.
25 M.A. Yurkin; V.P. Maltsev and A.G. Hoekstra: Convergence of the discrete dipole approximation. I. Theoretical analysis, Journal of Optical Society of America A, vol. 23, nr 10 pp. 2578-2591. 2006.
26 M.A. Yurkin; V.P. Maltsev and A.G. Hoekstra: Convergence of the discrete dipole approximation. II. An extrapolation technique to increase the accuracy, Journal of Optical Society of America A, vol. 23, nr 10 pp. 2592-2601. 2006.
27 M.A. Yurkin; V.P. Maltsev and A.G. Hoekstra: Can the Discrete Dipole Approximation Simulate Scattering of Particles with Size Parameter equal to 100?, in Proceedings of 9th International Conference on Electromagnetic and Light Scattering by Non-Spherical Particles, pp. 279-282. Saint Peterburg, Russia, June 2006. ISBN 5-9651-0210-0.
28 M.A. Yurkin and A.G. Hoekstra: An Extrapolation Technique to Increase the Accuracy of The Discrete Dipole Approximation, in Proceedings of 9th International Conference on Electromagnetic and Light Scattering by Non-Spherical Particles, pp. 283-286. Saint Peterburg, Russia, June 2006. ISBN 5-9651-0210-0.
29 D.I. Strokotov; I.G. Skribunov; M.A. Yurkin; D.R. van Bockstaele; M. Lenjou and K.A. Semyanov: Identification of blood cells subpopulations from angle resolved light scattering, in Proceedings of the NATO Advanced Research Workshop: Optics of Biological Particles, pp. 48-49. Novosibirsk,Russia, October 2005.
30 M.A. Yurkin; D. de Kanter and A.G. Hoekstra: Applicability of effective medium approximation to light scattering by granulated biological cells - first results, in Proceedings of the NATO Advanced Research Workshop: Optics of Biological Particles, pp. 46-47. Novosibirsk,Russia, October 2005. ISBN 5-98901-002-8.
31 M.A. Yurkin; K.A. Semyanov; A.G. Hoekstra and V.P. Maltsev: Experimental and Theoretical Study of Light Scattering by Individual Mature Red Blood Cells with Scanning Flow Cytometry and Discrete Dipole Approximation, in Proceedings of the 8th Conference on Electromagnetic and Light Scattering by Nonspherical Particles: Theory, Measurement and Applications, pp. 333-336. Salobrena, Spain, May 2005.
32 M.A. Yurkin; K.A. Semyanov; P.A. Tarasov; A.V. Chernyshev; A.G. Hoekstra and V.P. Maltsev: Experimental and theoretical study of light scattering by individual mature red blood cells with scanning flow cytometry and discrete dipole approximation, Applied Optics, vol. 44, nr 25 pp. 5249-5256. 2005.
33 M.A. Yurkin and A.G. Hoekstra: Capabilities of the discrete dipole approximation for simulation light scattering by biological cells, in Proceedings of the NATO Advanced Research Workshop: Optics of Biological Particles, Novosibirsk, Russia, pp. 19-20. Novosibirsk,Russia, October 2005. ISBN 5-98901-002-8.
34 I.V. Surovtsev; M.A. Yurkin; A.N. Shvalov; V.M. Nekrasov; G.F. Sivolobova; A.A. Grajdantseva; V.P. Maltsev and A.V. Chernyshev: Kinetics of the initial stage of immunoagglutionation studied with the scanning flow cytometer, Colloids and Surfaces B: Biointerfaces, vol. 32, nr 3 pp. 245-255. 2003. (DOI: 10.1016/S0927-7765(03)00177-2)
35 I.V. Surovtsev; M.A. Yurkin; A.N. Shvalov and G.F. Sivolobova: Kinetics of the initial stage of immunoagglutionation studied with the scanning flow cytometer, in Proceedings of the Photonic West 2003, Manipulation and Analysis of Biomolecules, Cells and Tissues, San Jose, California, USA, January 2003.
36 I.V. Surovtsev; M.A. Yurkin; A.N. Shvalov and G.F. Sivolobova: Kinetics of the initial stage of immunoagglutionation studied with the scanning flow cytometer, SPIE Proceedings, vol. 4962, pp. 354-363. 2003.
37 I.V. Surovtsev; A.A. Grajdantseva and M.A. Yurkin: Use of Scanning Flow Cytometry for biodetection via earliest stages of agglutination immunoassay, in Proceedings of the Chemical Biological Medical Treatment Symposium IV, Spiez, Switzerland, April 2002.

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