(33)J. Lee and S.-J. Kim*, "Meta-optics for optical engineering of next-generation AR/VR near-eye displays," Micromachines, vol. 16, no. 9, p. 1026, 2025. [Link]
(32) S. Cho, H. Kim, S. Choi, J. Park, D. Kim, J. Yeom, J. B. Choi, J. Jeong, J. Hong, and S.-J. Kim*, "Development of advanced sequential ray tracing simulator for lens systems using multi-functional holographic optical elements," Optics Express, vol. 33, no. 11, pp. 23755-23766, 2025. [Link]
(31) J. Bang, Y. Kim, T. Choi, C. Kim, H. Son, S.-J. Kim*, Y. Jeong*, and B. Lee, "Cascaded Janus Meta-optics: Generalized Platform for Bidirectional Asymmetric Modulation of Light," ACS Photonics, 2025. [Link]
(30) K. Kim, T. Choi, S. Choi, H. Kim, Y. W. Lee, S.-J. Kim*, B. Lee, and Y. Jeong*, "Multi-objective optimization of dynamic VO2 metagrating: broadband polarization-independent transmission modulator," Optics Express, vol. 32, no. 19, pp. 32680-32690, 2024. [Link]
(29) H. Son, T. Choi, K. Kim, Y. Kim, J. Bang, S.-J. Kim*, B. Lee, and Y. Jeong*, "Strong Coupling Induced Bound States in the Continuum in a Hybrid Metal-Dielectric Bilayer Nanograting Resonator," ACS Photonics, vol. 11, no. 8, pp. 3221-3231 , 2024. [Link]
(28) W. Han, J. Jeong, J. Kim, S.-J. Kim*, "Aberration Theory of a Flat, Aplanatic Metalens Doublet and the Design of a Meta-Microscope Objective Lens," Sensors, vol. 23, p. 9273, 2023. [Link]
(27) H. Chang, M. Yeo, S.-J. Kim*, Y. Jeong*, "Engineering angle selectivity of extraordinary optical transmission and nonlocal spatial filtering," Journal of Optical Society of America B, vol. 40, no. 10, 2576-2585, 2023. [Link]
(26) K. Kim, C. Kim, S.-J. Kim*, B. Lee*, "Design of Dynamically Focus-switchable Fresnel Zone Plates Based on Plasmonic Phase-change VO2 Metafilm Absorbers," Current Optics and Photonics, vol. 7, no. 3, pp. 254-262, 2023. [Link]
(25) H. Son, S.-J. Kim, J. Hong, J. Sung, B. Lee, "Design of highly perceptible dual-resonance all-dielectric metasurface colorimetric sensor via deep nerual networks," Scientific Reports, vol. 12, article 8512, 2022. [Link]
(24) S.-J. Kim*, C. Kim, Y. Kim, J. Jeong, S. Choi, W. Han, J. Kim, B. Lee, "Dielectric Metalens: Properties and Three-Dimensional Imaging Applications, " Sensors, vol. 21, no. 13, p. 4584, 2021. [Link]
(23) S.-J. Kim*, "Broadband phase-change metagrating design for efficient active reflection steering, " Current Optics and Photonics, vol. 5, no. 2, pp. 134-140, 2021. [Link]
(22) S.-J. Kim*, "Diffractive VO2 metagrating for strong multi-objective amplitude modulation of optical reflection , " Applied Optics, vol. 60, no. 9, pp. 2483-2487, 2021. [Link]
(21) S.-J. Kim, J. Hong, S. Moon, J.-G. Yun, and B. Lee, "Full color angular filtering of visible transmission in tapered plasmonic metamaterial," Plasmonics, vol. 16, no.1, pp. 115-121, 2021. [Link]
(20) S.-J. Kim, H. Yun, S. Choi, J.-G. Yun, K. Park, S. J. Jeong, S.-Y. Lee, Y. Lee, J. Sung, C. Choi, J. Hong, Y. W. Lee, and B. Lee, “Dynamic phase-change metafilm absorber for strong designer modulation of visible light,” Nanophotonics, vol. 10, no. 1, pp. 713-725, 2021. [Link]
(18) Y. Lee, J. Yun, M. Seo, S.-J. Kim, J. Oh, C. M. Kang, H.-J. Sun, T. D. Chung, and B. Lee, "Full-color-tunable nanophotonic device using electrochromic tungsten trioxide thin film," Nano Letters, vol. 20, no. 8, pp. 6084-6090, 2020. [Link] (Citation: 21)
(17) S.-J. Kim, I. Kim, S. Choi, H. Yoon, C. Kim, Y. Lee, J. Son, Y. W. Lee, J. Rho, and B. Lee, “Reconfigurable all-dielectric Fano metasurfaces for strong intensity modulations of visible light,” Nanoscale Horizons, vol. 5, no. 7, pp. 1088–1095, 2020. [Link] (Citation: 18)
(16) C. Kim, S.-J. Kim, and B. Lee, “Doublet metalens design for high numerical aperture and simultaneous correction of chromatic and monochromatic aberrations,” Optics Express, vol 28, no. 12, pp. 18059-18076, 2020. [Link] (Citation: 19)
(15) J.-G. Yun, J. Sung, S.-J. Kim, H. Yun, C. Choi, and B. Lee, “Ultracompact meta-pixels for high colour depth generation using a bi-layered hybrid metasurface”, Scientific Reports, vol. 9, article 15381, DOI: 10.1038/s41598-019-51946-8, 2019. [Link]
(14) Y. Lee, S.-J. Kim, J.-G. Yun, C. Kim, S.-Y. Lee, and B. Lee, "Electrically tunable multifunctional metasurface for integrating phase and amplitude modulation based on hyperbolic metamaterial substrate," Optics Express, vol 26, no. 24, pp. 32063-32073, 2018. [Link] (Citation: 14)
(13) S.-J. Kim, S. Choi, C. Choi, Y. Lee, J. Sung, H. Yun, J. Jeong, S.-E. Mun, Y. W. Lee, and B. Lee, “Broadband efficient modulation of light transmission with high contrast using reconfigurable VO2 diffraction grating,” Optics Express, vol 26, no. 26, pp. 34641-34654, 2018. [Link] (Citation: 13)
(12) J. Hong*, S.-J. Kim*, I. Kim, H. Yun, S.-E. Mun, J. Rho, and B. Lee, “Plasmonic metasurface cavity for simultaneous enhancement of optical electric and magnetic fields in deep subwavelength volume,” Optics Express, vol. 26, no. 10, pp. 13340-13348, 2018. [Link]
(11) J.-G. Yun, J. Sung, S.-J. Kim, and B. Lee, "Simultaneous control of polarization and amplitude over a broad bandwidth using multi-layered anisotropic metasurfaces," Optics Express, vol 26, no. 23, pp. 29826-29835, 2018. [Link]
(10) S.-E. Mun, H. Yun, C. Choi, S.-J. Kim, and B. Lee, “Enhancement and switching of Fano resonance in metamaterial,” Advanced Optical Materials, article 1800545, 2018. [Link] (Citation: 32)
(9) C. Choi, S.-J. Kim, J.-G. Yun, J. Sung, S.-Y. Lee, and B. Lee, “Deflection angle switching with a metasurface based on phase-change nanorods,” Chinese Optics Letters, vol. 16, no. 5, pp. 050009, 2018. [Link]
(8) S.-J. Kim, S.-E. Mun, Y. Lee, H. Park, J. Hong, and B. Lee, “Nanofocusing of Toroidal Dipole for Simultaneously Enhanced Electric and Magnetic Fields using Plasmonic Waveguide,” Journal of Lightwave Technology, vol. 36, Issue 10, pp. 1882-1889, 2018. [Link]
(7) Y. Lee*, S.-J. Kim*, H. Park, and B. Lee, "Metamaterials and metasurfaces for sensor applications," Sensors, vol. 17, no. 8, article 1726, doi:10.3390/s17081726, 2017. [Link] (Citation: 142)
(6) S.-J. Kim, S. Yoo, K. Lee, J. Kim, Y. Lee, and B. Lee, “Critical nanofocusing of magnetic dipole moment using a closed plasmonic tip,” Optics Express, vol. 25, no. 13, pp. 14077-14088, 2017. [Link]
(5) J.-G. Yun, S.-J. Kim, H. Yun, K. Lee, J. Sung, J. Kim, Y. Lee, and B. Lee, “Broadband ultrathin circular polarizer at visible and near-infrared wavelengths using a non-resonant characteristic in helically stacked nano-gratings,” Optics Express, vol. 25, no. 13, pp. 14260- 14269, 2017. [Link] (Citation: 23)
(4) S.-J. Kim, H. Yun, K. Park, J. Hong, J.-G. Yun, K. Lee, J. Kim, S. J. Jeong, S.-E. Mun, J. Sung, Y. W. Lee, and B. Lee, “Active directional switching of surface plasmon polaritons using a phase transition material,” Scientific Reports, vol. 7, article 43723, DOI: 10.1038/srep43723, 2017. [Link] (Citation: 39)
(3) J.-Y. Hong, S.-g. Park, C.-K. Lee, S. Moon, S.-J. Kim, J. Hong, Y. Kim, and B. Lee, "See-through multi-projection three-dimensional display using transparent anisotropic diffuser," Optics Express, vol. 24, no. 13, pp. 14138-14151, 2016. [Link] Citation: 20)
(2) S.-Y. Lee, S.-J. Kim, H. Kwon, and B. Lee, "Spin-direction control of high-order plasmonic vortex with double-ring distributed nanoslits," IEEE Photonics Technology Letters, vol. 27, no. 7, pp. 705-708, 2015. [Link] (Citation: 38)
(1) S.-Y. Lee, K. Kim, S.-J. Kim, H. Park, K.-Y. Kim, and B. Lee, "Plasmonic meta-slit: shaping and controlling near-field focus," Optica, vol. 2, no. 1, pp. 6-13, 2015. [Link] (Citation: 91)