JOURNAL ARTICLES
2024
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B. Zhou, M. Rasmussen, S. Zibod, S. Yan, N. K. Noori, O. Nagy, Y. Ding, S. J. Lange, K. Dolgaleva, R. W. Boyd, and P. U. Jepsen, "Measurement of the Dispersion of 𝜒(3) of SiO2 and SiN Across the THz and Far-Infrared Frequency Bands," Laser & Photonics Reviews (2024).
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S. Vijayakumar, K. Vyas, D. H. G. Espinosa, O. Reshef, M. Song, K. M. Awan, S. Choudhary, J. Cardenas, R. W. Boyd, and K. Dolgaleva, "Phase-matched third-harmonic generation in silicon nitride waveguides," Nanophotonics (2024).
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S. Aghili, R. Alaee, A. Ahmadnejad, E. Mobini, M. Mohammadpour, C. Rockstuhl, and K. Dolgaleva, "Dynamic control of spontaneous emission using magnetized InSb higher-order-mode antennas," Journal of Physics: Photonics 6, 035011 (2024).
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A. Jaber, M. Reitz, A. Singh, A. Maleki, Y. Xin, B. Sullivan, K. Dolgaleva, R. W. Boyd, C. Genes, and J.-M. Ménard, "Hybrid architectures for terahertz molecular polaritonics," Nature Communications 15; 4427 (2024).
2023
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S. Zibod, P. Rasekh, M. Yildrim, W. Cui, R. Bhardwaj, J.-M. Ménard, R. W. Boyd, and K. Dolgaleva, "Strong Nonlinear Response in Crystalline Quartz at THz Frequencies," Advanced Optical Materials (2023).
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A. Jaber, M. Reitz, A. Singh, A. Maleki, Y. Xin, B. Sullivan, K. Dolgaleva, R. W. Boyd, C. Genes, and J.-M. Ménard, "Hybrid THz architectures for molecular polaritonics," arXiv preprint arXiv:2304.03654 (2023).
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K. Vyas, K. M. Awan, and K. Dolgaleva, "Systematic study of InP/InGaAsP heated plasma etching and roughness improvement for integrated optical devices," Journal of Vacuum Science & Technology B, Nanotechnology and Microelectronics: Materials, Processing, Measurement, and Phenomena 41 (1); 012804 (2022).
2022
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K. Vyas, D. H. G. Espinosa, D. Hutama, S. K. Jain, R. Mahjoub, E. Mobini, K. M. Awan, J. Lundeen, and K. Dolgaleva, "Group III-V semiconductors as promising nonlinear integrated photonic platforms," Advances in Physics: X 7 (1); 2097020 (2022).
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N. Vermeulen, D. Espinosa, A. Ball, J. M. Ballato, P. Boucaud, G. Boudebs, C. L. A. V. Campos, P. D. Dragic, A. Gomes, M. J. Huttunen, N. Kinsey, R. P. Mildren, D. Neshev, L. Padilha, M. Pu, R. Secondo, E. Tokunaga, D. Turchinovich, J. Yan, K. Yvind, K. Dolgaleva, and E. van Stryland, "Post-2000 nonlinear optical materials and measurements: Data tables and best practices," Journal of Physics: Photonics (2022).
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F. Blanchard, J. E. Nkeck, L. Guiramand, S. Zibod, K. Dolgaleva, T. Arikawa, and K. Tanaka, "Two-dimensional space–time terahertz memory in bulk SrTiO3," Optica 9 (9); 980-986 (2022).
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E. Mobini, D. H. G. Espinosa, K. Vyas, and K. Dolgaleva, "AlGaAs nonlinear integrated photonics," Micromachines 13 (7); 991 (2022).
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J. R. Gagnon, O. Reshef, D. H. G. Espinosa, M. Z. Alam, D. I. Vulis, E. N. Knall, J. Upham, Y. Li, K. Dolgaleva, E. Mazur, and R. W. Boyd, "Relaxed phase-matching constraints in zero-index waveguides," Physical Review Letters 128 (20); 203902 (2022).
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M. Saad Bin-Alam, O. Reshef, R. N. Ahmad, J. Upham, M. J. Huttunen, K. Dolgaleva, and R. W. Boyd, "Cross-polarized surface lattice resonances in a rectangular lattice plasmonic metasurface," Optics Letters 47 (8); 2105-2108 (2022).
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S. Aghili, A. Amini, L. S. Dizaj, and K. Dolgaleva, "THz plasmonic metasurface based on a periodic array of InSb metamolecules with narrow resonances," Optics Communications 508; 127805 (2022).
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T.-L. Lim, Y. Vaddi, M. Saad-Bin-Alam, L. Cheng, R. Alaee, J. Upham, M. J. Huttunen, K. Dolgaleva, O. Reshef, and R. W. Boyd, "Fourier-engineered plasmonic lattice resonances," ACS nano 16 (4); 5696-5703 (2022).
2021
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D. H. G. Espinosa, S. R. Harrigan, K. M. Awan, P. Rasekh, and K. Dolgaleva, "Geometry-dependent two-photon absorption followed by free-carrier absorption in AlGaAs waveguides," JOSA B 38 (12); 3765-3774 (2021).
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E. Mobini, R. Alaee, R. W. Boyd, and K. Dolgaleva, "Giant asymmetric second-harmonic generation in bianisotropic metasurfaces based on bound states in the continuum," ACS Photonics 8 (11); 3234-3240 (2021).
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W. Cui, K. M. Awan, R. Huber, K. Dolgaleva, and J.-M. Menard, "Broadband and high-sensitivity time-resolved THz system using grating-assisted tilted-pulse-front phase matching," Advanced Optical Materials, 2101136 (2021).
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P. Rasekh, A. Safari, M. Yildirim, R. Bhardwaj, J.-M. Ménard, K. Dolgaleva, and R. W. Boyd, "Terahertz nonlinear spectroscopy of water vapor," ACS Photonics 8, 1683—1688 (2021).
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M. Saad-Bin-Alam, O. Reshef, Y. Mamchur, M. Z. Alam, G. Carlow, J. Upham, B. Sullivan, J.-M. Ménard, R. W. Boyd, and K. Dolgaleva, "Ultra-high-Q resonances in plasmonic metasurfaces," Nature Communications 12, 974—981 (2021).
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M. Saad-Bin-Alam, J. Baxter, K. M. Awan, A. Kiviniemi, Y. Mamchur, A. Cala Lesina, K. L. Tsakmakidis, M. J. Huttunen, L. Ramunno, and K. Dolgaleva, "Hyperpolarizability of plasmonic meta-atoms in metasurfaces," Nano Letters 21, 51—59 (2021).
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D. G. H. Espinosa, K. M. Awan, M. Odungide, S. R. Harrigan, and K. Dolgaleva, "Tunable four-wave mixing in AlGaAs waveguides in three different geometries," Optics Communications 479, 126450 (2021).
2020
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L. Gingras, A. Jaber, A. Maleki, O. Reshef, K. Dolgaleva, R. W. Boyd, and J.-M. Ménard, "Ultrafast modulation of the spectral filtering properties of a THz metasurface," Optics Express 28, 20296—20304 (2020).
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P. Rasekh, M. Saliminabi, M. Yildrim, R. W. Boyd, J.-M. Ménard, and K. Dolgaleva, "Propagation of broadband THz pulses: Effects of dispersion, diffraction and time-varying nonlinear refraction," Optics Express 28, 3237—3248 (2020).
2019
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A. Halpin, W. Cui, A. W. Schiff-Kearn, K. M. Awan, K. Dolgaleva, and J.-M. Ménard, "Enhanced terahertz detection efficiency via grating-assisted noncollinear electrooptic sampling," Physical Review Applied 12, 031003 (2019).
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O. Reshef, M. Saad-Bin-Alam, M. J. Huttunen, G. Carlow, B. T. Sullivan, J.-M. Ménard, K. Dolgaleva, and R. W. Boyd, "Multiresonant high-Q plasmonic arrays," Nano Letters 19, 6429—6434 (2019).
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M. J. Huttunen, O. Reshef, T. Stolt, K. Dolgaleva, R. W. Boyd, and M. Kauranen, "Efficient nonlinear metasurfaces by using multiresonant high-Q plasmonic arrays," Journal of the Optical Society of America B 36, E30—E35 (2019).
2018
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S. Saeidi, P. Rasekh, K. M. Awan, A. Tugen, M. J. Huttunen, and K. Dolgaleva, "Demonstration of optical nonlinearity in InGaAsP/InP waveguides," Optical Materials 84, 524—530 (2018).
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M. J. Huttunen, P. Rasekh, R. W. Boyd, and K. Dolgaleva, "Using surface lattice resonances to engineer nonlinear optical processes in metal nanoparticle arrays," Physical Review A 97, 053817 (2018).
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V. Tolstikhin, S. Saeidi, and K. Dolgaleva, "Design optimization and tolerance analysis of a spot-size converter for the taper-assisted vertical integration platform in InP," Applied Optics 57, 3586—3591 (2018).
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K. M. Awan, M. M. Muhammad, M. Sivan, S. Bonca, I. S. Roqan, and K. Dolgaleva, "Fabrication and optical characterization of GaN waveguides on (-201)-oriented beta-Ga2O3," Optical Materials Express 8, 88—96 (2018).
2017
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S. Saeidi, K. M. Awan, L. Sirbu, and K. Dolgaleva, "Nonlinear photonics on-a-chip in III-V semiconductors: Quest for promising material candidates," Applied Optics 56, 5532—5541 (2017).
2016
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M. J. Huttunen, K. Dolgaleva, P. Torma, and R. W. Boyd, "Ultra-strong polarization dependence of surface lattice resonances," Optics Express 24, 28279—28289 (2016).
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O. S. Maga~na-Loaiza, B. Gao, S. A. Schulz, K. M. Awan, J. Upham, K. Dolgaleva, and R. W. Boyd, "Enhanced spectral sensitivity of a chip-scale photonic-crystal slow-light interferometer," Optics Letters 41, 1431—1434 (2016).
2015
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K. Dolgaleva, P. Sarrafi, P. Kultavewuti, K. M. Awan, N. Feher, J. S. Aitchison, L. Qian, M. Volatier, R. Arès, and V. Aimez, "Tuneable four-wave mixing in AlGaAs nanowires," Optics Express 23, 22477—22493 (2015).
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K. Dolgaleva, D. V. Materikina, R. W. Boyd, and S. A. Kozlov, "Prediction of an extremely large nonlinear refractive index for crystals at terahertz frequencies," Physical Review A 92, 023809 (2015).
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K. M. Awan, S. A. Schulz, D. X. Liu, K. Dolgaleva, J. Upham, and R. W. Boyd, "Post-process wavelength tuning of silicon photonic crystal slow-light waveguides," Optics Letters 40, 1952—1955 (2015).
2013
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P. Sarrafi, E. Y. Zhu, K. Dolgaleva, B. M. Holmes, D. C. Hutchings, J. S. Aitchison, and L. Qian, "Continuous-wave quasi-phase-matched waveguide correlated photon pair source on a III-V chip," Applied Physics Letters 103, 251115 (2013).
2012
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K. Dolgaleva, "Modification of laser gain properties through local-field effects and nanostructuring," invited paper, Photonics and Nanostructures: Fundamentals and Applications 10, 369—377 (2012).
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K. Dolgaleva and R. W. Boyd, "Local-field effects in nanostructured photonic materials," invited paper, Advances in Optics and Photonics 4, 1—77 (2012).
2011
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Z. Shi, K. Dolgaleva, and R. W. Boyd, "Quantum noise properties of optical non-ideal amplifiers and attenuators," Journal of Optics 13, 125201 (2011).
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L. Caspani, D. Duchesne, K. Dolgaleva, S. Wagner, M. Ferrera, L. Razzari, A. Pasquazi, M. Peccianti, D. J. Moss, J. S. Aitchison, and R. Morandotti, "Optical frequency conversion in integrated devices," invited paper, Journal of the Optical Society of America B 28, A67—A82 (2011).
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K. Dolgaleva, A. Malacarne, P. Tannouri, L. A. Fernandes, R. J. Grenier, J. S. Aitchison, J. Azaña, R. Morandotti, P. R. Herman, and P. V. S. Marques, "Integrated optical temporal Fourier transformer based on chirped Bragg grating waveguide," Optics Letters 36, 4416—4418 (2011).
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K. Dolgaleva, W. C. Ng, L. Qian, and J. S. Aitchison, "Compact highly-nonlinear AlGaAs waveguides for efficient wavelength conversion," Optics Express 19, 12440—12455 (2011).
2010
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K. Dolgaleva, W. C. Ng, L. Qian, J. S. Aitchison, M. C. Camasta, and M. Sorel, "Broadband self-phase modulation, cross-phase modulation, and four-wave mixing in 9-mm-long AlGaAs waveguides," Optics Letters 35, 4093—4095 (2010).
2009
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K. Dolgaleva, H. Shin, and R. W. Boyd, "Observation of a microscopic cascaded contribution to the fifth-order nonlinear susceptibility," Physical Review Letters 103, 113902 (2009).
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S. N. Volkov, K. Dolgaleva, R. W. Boyd, K. Jefomovs, J. Turunen, Y. Svirko, B. K. Canfield, and M. Kauranen, "Optical activity in diffraction from a planar array of achiral nanoparticles," Physical Review A 79, 043819 (2009).
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S. K. H. Wei, S. H. Chen, K. Dolgaleva, S. G. Lukishova, and R. W. Boyd, "Robust organic lasers comprising glassy-cholesteric pentafluorene doped with a red-emitting oligofluorene," Applied Physical Letters 94, 041111 (2009).
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K. Dolgaleva, R. W. Boyd, and P. W. Milonni, "The effects of local field on laser gain for layered and Maxwell Garnett composite materials," invited paper, Journal of Optics A: Pure and Applied Optics 11, 024002 (2009).
2008
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K. Dolgaleva, S. K. H. Wei, S. G. Lukishova, S. H. Chen, K. Schwertz, and R. W. Boyd, "Enhanced laser performance of cholesteric liquid crystals doped with oligofluorene dye," Journal of the Optical Society of America B 25, 1496—1504 (2008).
2007
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K. Dolgaleva, R. W. Boyd, and J. E. Sipe, "Cascaded nonlinearity caused by local-field effects in the two-level atom," Physical Review A 76, 063806 (2007).
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K. Dolgaleva and R. W. Boyd, "Laser gain media based on nanocomposite materials," invited paper, Journal of the Optical Society of America B 24, A19—A25 (2007).
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K. Dolgaleva, R. W. Boyd, and P. W. Milonni, "Influence of local-field effects on the radiative lifetime of liquid suspensions of Nd:YAG nanoparticles," Journal of the Optical Society of America B 24, 516—521 (2007).
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L. Syrbu, V. V. Ursaki, I. M. Tiginyanu, K. Dolgaleva, and R. W. Boyd, "Red and green phosphoros prepared from porous GaAs templates," Journal of Optics A: Pure and Applied Optics 9, 401—404 (2007).
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L. Sirbu, V. V. Ursaki, I. M. Tiginyanu, K. Dolgaleva, and R. W. Boyd, "Er- and Eu-doped CaP-oxide porous composites for optoelectronic applications," Physica Status Solidi (RRL) - Rapid Research Letters 1, R13—R15 (2007).
2005
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P. P. Markowicz, V. K. S. Hsiao, H. Tiryaki, A. N. Cartwright, P. N. Prasad, K. Dolgaleva, N. N. Lepeshkin, and R. W. Boyd,"Enhancement of third-harmonic generation in a polymer-dispersed liquid-crystal grating," Applied Physics Letters 87, 051102 (2005).
2000
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V. G. Voronin, K. P. Dolgaleva, and O. E. Nanii, "Two-colour emission in a solid-state laser with a dispersive cavity," Quantum Electronics 30, 778—782 (2000).