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44. J. Wurm, S. T. Fujisava-Phillips, and I. L. Rasskazov

     Optimal design of low-emissivity coatings

     Solar Energy Materials and Solar Cells 280, 113267 (2025)

43. L. M. Sidor, M. M. Beaulieu, I. Rasskazov, B. C. Acarturk, J. Ren, L. Kamoen, M. V. Vitali, P. S. Carney, G. R. Schmidt,  
     W. V. Srubar, E. A. Abbondanzieri, and A. S. Meyer

     Engineered bacteria that self-assemble “bioglass” polysilicate coatings display enhanced light focusing

     Proceedings of the National Academy of Sciences 121, e2409335121 (2024)

42. A. Joshi and I. L. Rasskazov

     Plasmon-enhanced downshifting and downconversion: Fundamentals and applications in photovoltaics

     Reviews in Physics 12, 100096 (2024)

41. A. D. Utyushev, V. I. Zakomirnyi, A. A. Shcherbakov, I. L. Rasskazov, and A. Moroz

     Intuitive understanding of extinction of small particles in absorbing and active host media within the MLWA

     Journal of the Optical Society of America B 41, 2519–2526 (2024)

40. V. I. Zakomirnyi, A. Moroz, R. Bhargava, and I. L. Rasskazov 

     Large fluorescence enhancement via lossless all-dielectric spherical mesocavities

     ACS Nano 18, 1621–1628 (2024)

39. A. Utyushev, R. Gaponenko, S. Sun, A. Shcherbakov, A. Moroz, and I. L. Rasskazov

     Generation of nearly pure and highly directional magnetic light in fluorescence of rare earth ions

     Physical Review B 109, 045413 (2024)

38. L. Wang, I. L. Rasskazov, and P. S. Carney

     Clausius-Mossotti relation revisited: Media with electric and magnetic response

     Optics Communications 549, 129844 (2023)

37. R. Gaponenko, M. S. Sidorenko, D. Zhirihin, I. L. Rasskazov, A. Moroz, K. Ladutenko, P. Belov, and A. Shcherbakov

     Experimental demonstration of superdirective spherical dielectric antenna

     Journal of Applied Physics 134, 014901 (2023)

36. Y. Ji, W. Xu, I. L. Rasskazov, H. Liu, J. Hu, M. Liu, D. Zhou, X. Bai, H. Ågren, and H. Song

     Perovskite photonic crystal  photoelectric devices

     Applied Physics Reviews 9, 041319 (2022)

35. I. L. Rasskazov, N. Sonwalkar, and P. S. Carney

     Light scattering by plasmonic disks and holes arrays: Different or the same?

     Journal of Physics D: Applied Physics 55, 455104 (2022)

34. I. L. Rasskazov and A. Moroz

     Is there a proper figure of merit for a plasmonic structure involved in metal-enhanced fluorescence?

     Plasmonics 17, 1091–1094 (2022)

33. A. S. Kostyukov, I. L. Rasskazov, V. S. Gerasimov, S. P. Polyutov, S. V. Karpov, and A. E. Ershov

     Multipolar lattice resonances in plasmonic finite-size metasurfaces

     Photonics 8, 109 (2021)

32. L. Wang, I. L. Rasskazov, and P. S. Carney

     Clustering diffused-particle method for scattering from large ensembles of electromagnetically polarizable particles

     Physical Review B 104, 115418 (2021)

31. R. Gaponenko, A. Moroz, I. L. Rasskazov, K. Ladutenko, A. Shcherbakov, and P. Belov

     Harnessing superdirectivity in dielectric spherical multilayer antennas

     Physical Review B 104, 195406 (2021)

30. V. S. Gerasimov, A. E. Ershov, R. G. Bikbaev, I. L. Rasskazov, I. L. Isaev, P. N. Semina, A. S. Kostyukov,

     V. I. Zakomirnyi, S. P. Polyutov, and S. V. Karpov

     Plasmonic lattice Kerker effect in ultraviolet-visible spectral range

     Physical Review B 103, 035402 (2021)

29. A. S. Kostyukov, A. E. Ershov, R. G. Bikbaev, V. S. Gerasimov, I. L. Rasskazov, S. V. Karpov, and S. P. Polyutov

     Substrate–mediated lattice Kerker effect in Al metasurfaces

     Journal of the Optical Society of America B 38, C78–C83 (2021)

28. A. D. Utyushev, V. I. Zakomirnyi, and I. L. Rasskazov

     Collective lattice resonances: Plasmonics and beyond

     Reviews in Physics 6, 100051 (2021)

27. I. L. Rasskazov, A. Moroz, and P. S. Carney

     Extraordinary fluorescence enhancement in metal-dielectric core–shell nanoparticles

     Journal of Physical Chemistry Letters 12, 6425–6430 (2021)

26. I. L. Rasskazov, V. I. Zakomirnyi, A. D. Utyushev, P. S. Carney, and A. Moroz

     Remarkable predictive power of the modified long wavelength approximation

     Journal of Physical Chemistry C 125, 1963–1971 (2021)

25. A. D. Utyushev, I. L. Isaev, V. S. Gerasimov, A. E. Ershov, V. I. Zakomirnyi, I. L. Rasskazov, S. P. Polyutov,

     H. Agren, and S. V. Karpov

     Engineering novel tunable optical high-Q nanoparticle array filters for a wide range of wavelengths

     Optics Express 28, 1426–1438 (2020)

24. I. L. Rasskazov, P. S. Carney, and A. Moroz

     STRATIFY: a comprehensive and versatile MATLAB code for a multilayered sphere

     OSA Continuum 3, 2290–2309 (2020)

23. A. D. Utyushev, V. I. Zakomirnyi, A. E. Ershov, V. S. Gerasimov, S. V. Karpov, and I. L. Rasskazov

     Collective lattice resonances in all-dielectric nanostructures under oblique incidence

     Photonics 7, 24 (2020)

22. V. I. Zakomirnyi, I. L. Rasskazov, L. K. Sørensen, P. S. Carney, Z. Rinkevicius, and H. Agren

     Plasmonic nano-shells: atomistic discrete interaction versus classic electrodynamics models

     Physical Chemistry Chemical Physics 22, 13467–13473 (2020)

21. S. Sun, I. L. Rasskazov, P. S. Carney, T. Zhang, and A. Moroz

     Critical role of shell in enhanced fluorescence of metal-dielectric core-shell nanoparticles

     Journal of Physical Chemistry C 124, 13365–13373 (2020)

20. I. L. Rasskazov, P. S. Carney, and A. Moroz

     Intriguing branching of the maximum position of the absorption cross section in Mie theory explained

     Optics Letters 45, 4056–4059 (2020)

19. I. L. Rasskazov, A. Moroz, and P. S. Carney

     Electromagnetic energy in multilayered spherical particles

     Journal of the Optical Society of America A 36, 1591–1601 (2019)

18. V. I. Zakomirnyi, S. V. Karpov, H. Agren, and I. L. Rasskazov

     Collective lattice resonances in disordered and quasi-random all-dielectric metasurfaces

     Journal of the Optical Society of America B 36, E21–E29 (2019)

17. I. L. Rasskazov, R. Singh, P. S. Carney, and R. Bhargava

     Extended multiplicative signal correction for infrared microspectroscopy of heterogeneous samples with

     cylindrical domains

     Applied Spectroscopy 73, 859–869 (2019)

16. V. S. Gerasimov, A. E. Ershov, R. G. Bikbaev, I. L. Rasskazov, I. V. Timofeev, S. P. Polyutov, and S. V. Karpov

     Engineering mode hybridization in regular arrays of plasmonic nanoparticles embedded in 1D photonic crystal

     Journal of Quantitative Spectroscopy and Radiative Transfer 224, 303–308 (2019)

15. A. S. Kostyukov, A. E. Ershov, V. S. Gerasimov, S. A. Filimonov, I. L. Rasskazov, and S. V. Karpov

     Super-efficient laser hyperthermia of malignant cells with core-shell nanoparticles based on alternative plasmonic materials

     Journal of Quantitative Spectroscopy and Radiative Transfer 236, 106599 (2019)

14. V. I. Zakomirnyi, A. E. Ershov, V. S. Gerasimov, S. V. Karpov, H. Agren, and I. L. Rasskazov

     Collective lattice resonances in arrays of dielectric nanoparticles: a matter of size

     Optics Letters 44, 5743–5746 (2019)

13. V. Zakomirnyi, I. Rasskazov, V. Gerasimov, A. Ershov, S. Polyutov, S. Karpov, and H. Agren

     Titanium nitride nanoparticles as an alternative platform for plasmonic waveguides in the visible and

     telecommunication wavelength ranges

     Photonics and Nanostructures - Fundamentals and Applications 30, 50–56 (2018)

12. I. L. Rasskazov, L. Wang, C. J. Murphy, R. Bhargava, and P. S. Carney

     Plasmon-enhanced upconversion: engineering enhancement and quenching at nano and macro scales

     Optical Materials Express 8, 3787–3804 (2018)

11. A. E. Ershov, V. S. Gerasimov, A. P. Gavrilyuk, S. V. Karpov, V. I. Zakomirnyi, I. L. Rasskazov, and S. P. Polyutov

     Thermal limiting effects in optical plasmonic waveguides

     Journal of Quantitative Spectroscopy and Radiative Transfer 191, 1–6 (2017)

10. V. S. Gerasimov, A. E. Ershov, S. V. Karpov, A. P. Gavrilyuk, V. I. Zakomirnyi, I. L. Rasskazov, H. Agren, and S. P. Polyutov

     Thermal effects in systems of colloidal plasmonic nanoparticles in high-intensity pulsed laser fields [Invited]

     Optical Materials Express 7, 555–568 (2017)

9. V. I. Zakomirnyi, I. L. Rasskazov, V. S. Gerasimov, A. E. Ershov, S. P. Polyutov, and S. V. Karpov

    Refractory titanium nitride two-dimensional structures with extremely narrow surface lattice resonances

    at telecommunication wavelengths

    Applied Physics Letters 111, 123107 (2017)

8. V. I. Zakomirnyi, I. L. Rasskazov, S. V. Karpov, and S. P. Polyutov

    New ideally absorbing Au plasmonic nanostructures for biomedical applications

    Journal of Quantitative Spectroscopy and Radiative Transfer 187, 54–61 (2017)

7. I. L. Rasskazov, N. Spegazzini, P. S. Carney, and R. Bhargava

    Dielectric sphere clusters as a model to understand infrared spectroscopic imaging data recorded from complex samples

    Analytical Chemistry 89, 10813–10818 (2017)

6. I. L. Rasskazov, S. V. Karpov, G. Y. Panasyuk, and V. A. Markel

    Overcoming the adverse effects of substrate on the waveguiding properties of plasmonic nanoparticle chains

    Journal of Applied Physics 119, 043101 (2016)

5. I. L. Rasskazov, S. V. Karpov, and V. A. Markel

    Waveguiding properties of short linear chains of nonspherical metal nanoparticles

    Journal of the Optical Society of America B 31, 2981–2989 (2014)

4. I. L. Rasskazov, S. V. Karpov, and V. A. Markel

    Surface plasmon polaritons in curved chains of metal nanoparticles

    Physical Review B 90, 075405 (2014)

3. I. L. Rasskazov, S. V. Karpov, and V. A. Markel

    Nondecaying surface plasmon polaritons in linear chains of silver nanospheroids

    Optics Letters 38, 4743–4746 (2013)

1. I. L. Rasskazov, V. A. Markel, and S. V. Karpov

    Transmission and spectral properties of short optical plasmon waveguides

    Optics and Spectroscopy 115, 666–674 (2013)

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