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549. Automatic turbulence mitigation for coherent free-space optical links using crystal-based phase conjugation and fiber-coupled data modulation
H. Zhou, Y. Duan, H. Song, X. Su, Z. Zhao, K. Zou, H. Song, R. Zhang, R. W. Boyd, M. Tur, and A. E. Willner, Opt. Lett. 48, 2194-2197 (2023).
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544. Demonstration of Turbulence Resiliency in a Mode-, Polarization-, and Wavelength-Multiplexed Free-Space Optical Link Using Pilot-Assisted Optoelectronic Beam Mixing
H. Zhou, R. Zhang, H. Song, N. Hu, H. Song, K. Zou, X. Su, Z. Zhao, K. Pang, A. Almaiman, C. Liu, A. Minoofar, B. Lynn, D. Park , R. W. Boyd, M. Tur, and A. E. Willner, J. Lightwave Technol. 40, 588-596 (2022)
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534. Experimental demonstration of dynamic spatiotemporal structured beams that simultaneously exhibit two orbital angular momenta by combining multiple frequency lines, each carrying multiple Laguerre–Gaussian modes
K. Pang, K. Zou, Z. Zhao, H. Song, Y. Zhou, M. Karpov, M. Yessenov, A. Shiri, H. Song, R. Zhang, H. Zhou, X. Su, N. Hu, A. Minoofar, T. J. Kippenberg, R. W. Boyd, A. F. Abouraddy, M. Tur, and A. E. Willner, Optics Letters 47, 4044-4047 (2022).
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530. Simultaneous turbulence mitigation and channel demultiplexing using a single multi-plane light convertor for a free-space optical link with two 100-Gbit/s OAM channels
H. Song, X. Su, H. Song, R. Zhang, Z. Zhao, N. Hu, K. Zou, H. Zhou, K. Pang, C. Liu, K. Manukyan, A. Almaiman, A. F. Molisch, R. W. Boyd, S. Zach, M. Tur, A. E. Willner, Optics Communications 501, 127359 (2021).
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528. Perspectives on advances in high-capacity, free-space communications using multiplexing of orbital-angular-momentum beams
A. E. Willner, Z. Zhao, C. Liu, R. Zhang, H. Song, K. Pang, K. Manukyan, H. Song, X. Su, G. Xie1, Y. Ren, Y. Yan, M. Tur, A. F. Molisch, R. W. Boyd, H. Zhou, N. Hu, A. Minoofar, and H. Huang, APL Photonics 6, 030901 (2021).
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522. Turbulence-resilient pilot-assisted self-coherent free-space optical communications using automatic optoelectronic mixing of many modes
R. Zhang, N. Hu, H. Zhou, K. Zou, X. Su, Y. Zhou, H. Song, K. Pang, H. Song, A. Minoofar, Z. Zhao, C. Liu, K. Manukyan, A. Almaiman, B. Lynn, R. W. Boyd, M. Tur & A. E. Willner, Nature Photonics 15, 743–750 (2021).
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521. Adiabatic Frequency Conversion Using a Time-Varying Epsilon-Near-Zero Metasurface
K. Pang, M. Z. Alam, Y. Zhou, C. Liu, O. Reshef, K. Manukyan, M. Voegtle, A. Pennathur, C. Tseng, X. Su, H. Song, Z. Zhao, R. Zhang, H. Song, N. Hu, A. Almaiman, J. M. Dawlaty, R. W. Boyd, M. Tur, and A. E. Willner, Nano Lett., 21, 14, 5907–5913 (2021).
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520. Tunable Doppler shift using a time-varying epsilon-near-zero thin film near 1550 nm
C. Liu, M. Z. Alam, K. Pang, K. Manukyan, J. R. Hendrickson, E. M. Smith, Y. Zhou, O. Reshef, H. Song, R. Zhang, H. Song, F. Alishahi, A. Fallahpour, A. Almaiman, R. W. Boyd, M. Tur, and A. E. Willner, Optics Letters 14, 3444-3447 (2021).
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518. Experimental demonstration of superresolution of partially coherent light sources using parity sorting
S. A. Wadood, K. Liang, Y. Zhou, J. Yang, M. A. Alonso, X.-F. Qian, T. Malhotra, S. M. H. Rafsanjani, A. N. Jordan, R. W. Boyd, and A. N. Vamivakas, Optics Express 29, 22034-22043 (2021).
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515. Dependence of the coupling properties between a plasmonic antenna array and a sub-wavelength epsilon-near-zero film on structural and material parameters
K. Manukyan, M. Z. Alam, C. Liu, K. Pang, H. Song, Z. Zhao, M. Tur, R. W. Boyd, and A. E. Willner, Appl. Phys. Lett. 118, 241102 (2021).
[Link] [PDF] -
508. Photon Acceleration Using a Time-Varying Epsilon-near-Zero Metasurface
C. Liu, M. Z. Alam, K. Pang, K. Manukyan, O. Reshef, Y. Zhou, S. Choudhary, J. Patrow, A. Pennathurs, H. Song, Z. Zhao, R. Zhang, F. Alishahi, A. Fallahpour, Y. Cao, A. Almaiman, J. M. Dawlaty, M. Tur, R. W. Boyd, and A. E. Willner, ACS Photonics, 1929 (2021).
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497. Utilizing adaptive optics to mitigate intra-modal-group power coupling of graded-index few-mode fiber in a 200-Gbit/s mode-division-multiplexed link
R. Zhang, H. Song, H. Song, Z. Zhao, G. Milione, K. Pang, J. Du, L. Li, K. Zou, H. Zhou, C. Liu, K. Manukyan, N. Hu, A. Almaiman, J. Stone, M-J. Li, B. Lynn, R. W. Boyd, M. Tur, and A. E. Willner, Optics Letters 45, 3577-3580 (2020).
[Link] [PDF] -
487. Experimental mitigation of the effects of the limited size aperture or misalignment by singular-value-decomposition-based beam orthogonalization in a free-space optical link using Laguerre–Gaussian modes
K. Pang, H. Song, X. Su, K. Zou, Z. Zhao, H. Song, A. Almaiman, R. Zhang, C. Liu, N. Hu, S. Zach, N. Cohen, B. Lynn, A. F. Molisch, R. W. Boyd, M. Tur, and A. E. Willner, Optics Letters 45, 6310-6313 (2020).
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485. Dynamic spatiotemporal beams that combine two independent and controllable orbital-angular-momenta using multiple optical-frequency-comb lines
Z. Zhao, H. Song, R. Zhang, K. Pang, C. Liu, H. Song, A. Almaiman, K. Manukyan, H. Zhou, B. Lynn, R. W. Boyd, M. Tur, and A. E. Willner, Nature Communications 11, 4099 (2020).
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484. Roadmap on quantum light spectroscopy
S. Mukame, M. Freyberger, W. Schleich, M. Bellini, A. Zavatta, G. Leuchs, C. Silberhorn, R. W Boyd, L. L. Sánchez-Soto, A. Stefanov, M. Barbier, A. Paterova, L. Krivitsky, S. Shwartz, K. Tamasaku, K. Dorfman, F. Schlawin, V. Sandoghdar, M. Raymer, A. Marcus, O. Varnavski, T. Goodson III, Z.-Y. Zhou, B.-S. Shi, S. Asban, M. Scully, G. Agarwal, T. Peng, A. V. Sokolov, Z.-D. Zhang, M. S. Zubairy, I. A. Vartanyants, E. del Valle, and F. Laussy, J. Phys. B: At. Mol. Opt. Phys. 53 072002 (2020).
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482. Simultaneous turbulence mitigation and channel demultiplexing for two 100 Gbit/s orbital-angular-momentum multiplexed beams by adaptive wavefront shaping and diffusing
R. Zhang, H. Song, Z. Zhao, H. Song, J. Du, C. Liu, K. Pang, L. Li, H. Zhou, A. N. Willner, A. Almaiman, Y. Zhou, R. W. Boyd, B. Lynn, R. Bock, M. Tur, and A. E. Willner, Optics Letters 45, 702-705 (2020)
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481. Metformin Abrogates Age-Associated Ovarian Fibrosis
C.W. McCloskey, D.P. Cook, B.S. Kelly, F. Azzi, C.H. Allen, A. Forsyth, J. Upham, K. J. Rayner, D. A. Gray, R. W. Boyd, S. Murugkar, B. Lo, D. Trudel, M. K. Senterman, B. C. Vanderhyden, Clinical Cancer Research 26, 632-642 (2020)
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478. Single-End Adaptive Optics Compensation for Emulated Turbulence in a Bi-Directional 10-Mbit/s per Channel Free-Space Quantum Communication Link Using Orbital-Angular-Momentum Encoding
C. Liu, K. Pang, Z. Zhao, P. Liao, R. Zhang, H. Song, Y. Cao, J. Du, L. Li1, H. Song, Y. Ren, G. Xie, Y. Zhao, J. Zhao, S. M. H. Rafsanjani, A. N. Willner, J. H. Shapiro, R. W. Boyd, M. Tur, and A. E. Willner, Research, 8326701 (2019).
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477. Switchable detector array scheme to reduce the effect of single-photon detector’s deadtime in a multi-bit/photon quantum link
C. Liu, Y. Ren, J. Zhao, M. Mirhosseini, S. M. H. Rafsanjani , G. Xie, K. Pang , H. Song , Z. Zhao , Z. Wang, L. Li, J. C. Bienfang, A. Migdall, T. A. Brun, M. Tur, R. W. Boyd, A. E. Willner, Optics Communications 441 ,132-137 (2019).
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460. Using all transverse degrees of freedom in quantum communications based on a generic mode sorter
Y. Zhou, M. Mirhosseini, S. Oliver, J. Zhao, S. M. H. Rafsanjani, M. P. J. Lavery, A. E. Willner, and R. W. Boyd, Optics Express 27, 10383-10394 (2019). (Designated as an Editor’s Pick.)
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454. Demonstration of a 10 Mbit/s quantum communication link by encoding data on two Laguerre–Gaussian modes with different radial indices
K. Pang, C. Liu, G. Xie, Y. Ren, Z. Zhao, R. Zhang, Y. Cao, J. Zhao, H. Song, H. Song, L. Li, A. N. Willner, M. Tur, R. W. Boyd, and A. E. Willner, Optics Letters 43 5639 (2018).
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439. Experimental estimate of the nonlinear refractive index of crystalline ZnSe in the terahertz spectral range
A. N. Tcypkin, S. E. Putilin, M. C. Kulya, M. V. Melnik, A. A. Drozdov, V. G. Bespalov, X.-C. Zhang, R. W. Boyd, and S. A. Kozlov, Bull. Russ. Acad. Sci. Phys. 82, 1547–1549 (2018).
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437. Plasmonic nanoantennas with liquid crystals for nanocrystal fluorescence enhancement and polarization selectivity of classical and quantum light sources
S. G. Lukishova, A. C. Liapis, H. Zhu, E. Hebert, K. Kuyk, S. Choudhary, R. W. Boyd, Z. Wang, and L. J. Bissell, Molecular Crystals and Liquid Crystals, 657, 173-183 (2018)
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425. Observation of Nanoscale Magnetic Fields Using Twisted Electron Beams
V. Grillo, T. R. Harvey, F. Venturi, J. S. Pierce, R. Balboni, F. Bouchard, G. C. Gazzadi, S. Frabboni, A. H. Tavabi, Z. Li, R. E. Dunin-Borkowski, R. W. Boyd, B. J. McMorran, and E. Karimi, Nat. Commun. 8, 689 (2017).
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417. Measuring the Orbital Angular Momentum Spectrum of an Electron Beam
V. Grillo, A. H. Tavabi, F. Venturi, H. Larocque, R. Balboni, G. C. Gazzadi, S. Frabboni, P. Lu, E. Mafakheri, F. Bouchard, R. E. Dunin-Borkowski, R. W. Boyd, M. P. J. Lavery, M. J. Padgett, and E. Karimi, Nat. Commun. 8, 15536 (2017).
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379. Experimental Demonstration of 20 Gbit/s Data Encoding and 2 ns Channel Hopping Using Orbital Angular Momentum Modes
A. J. Willner, Y. Ren, G. Xie, Z. Zhao, Y. Cao, L. Li, N. Ahmed, Z. Wang, Y. Yan, P. Liao, C. Liu, M. Mirhosseini, R. W. Boyd, M. Tur, and A. E. Willner, Opt. Lett. 40, 5810 (2015).
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365. Turbulence Compensation of an Orbital Angular Momentum and Polarization-Multiplexed Link Using a Data-Carrying Beacon on a Separate Wavelength
Y. Ren, G. Xie, H. Huang, L. Li, N. Ahmed, Y. Yan, M. P. J. Lavery, R. Bock, M. Tur, M. A. Neifeld, R. W. Boyd, J. H. Shapiro, and A. E. Willner, Opt. Lett. 40, 2249 (2015).
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363. Phase Correction for a Distorted Orbital Angular Momentum Beam Using a Zernike Polynomials-Based Stochastic-Parallel-Gradient-Descent Algorithm
G. Xie, Y. Ren, H. Huang, M. P. J. Lavery, N. Ahmed, Y. Yan, C. Bao, L. Li, Z. Zhao, Y. Cao, M. Willner, M. Tur, S. J. Dolinar, R. W. Boyd, J. H. Shapiro, and A. E. Willner, Opt. Lett. 40, 1197 (2015).
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350. Adaptive-Optics-Based Simultaneous pre- and Post-Turbulence Compensation of Multiple Orbital-Angular-Momentum Beams in a Bidirectional Free-Space Optical Link
Y. Ren, G. Xie, H. Huang, N. Ahmed, Y. Yan, L. Li, C. Bao, M. P. J. Lavery, M. Tur, M. A. Neifeld, R. W. Boyd, J. H. Shapiro, and A. E. Willner, Optica 1, 376 (2014).
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345. Adaptive Optics Compensation of Multiple Orbital Angular Momentum Beams Propagating Through Emulated Atmospheric Turbulence
Y. Ren, G. Xie, H. Huang, C. Bao, Y. Yan, N. Ahmed, M. P. J. Lavery, B. I. Erkmen, S. Dolinar, M. Tur, M. A. Neifeld, M. J. Padgett, R. W. Boyd, J. H. Shapiro, and A. E. Willner, Opt. Lett. 39, 2845 (2014).
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322. Atmospheric Turbulence Effects on the Performance of a Free Space Optical Link Employing Orbital Angular Momentum Multiplexing
Y. Ren, H. Huang, G. Xie, N. Ahmed, Y. Yan, B. I. Erkmen, N. Chandrasekaran, M. P. J. Lavery, N. K. Steinhoff, M. Tur, S. Dolinar, M. Neifeld, M. J. Padgett, R. W. Boyd, J. H. Shapiro, and A. E. Willner, Opt. Lett. 38, 4062 (2013).
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258. Organic Photonic Bandgap Microcavities Doped with Semiconductor Nanocrystals for Room-Temperature on-Demand Single-Photon Sources
S. G. Lukishova, L. J. Bissell, V. M. Menon, N. Valappil, M. A. Hahn, C. M. Evans, B. Zimmerman, T. D. Krauss, C. R. S. Jr, and R. W. Boyd, J. Mod. Optic. 56, 167 (2009).
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171. Nanofabrication of Optical Structures and Devices for Photonics and Biophotonics
R. W. Boyd, J. E. Heebner, N. N. Lepeshkin, Q. Park, A. Schweinsberg, G. W. Wicks, A. S. Baca, J. E. Fajardo, R. R. Hancock, M. A. Lewis, R. M. Boysel, M. Quesada, R. Welty, A. R. Bleier, J. Treichler, and R. E. Slusher, J. Mod. Optic. 50, 2543 (2003).
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45. Research on Nonlinear Optical Materials: an Assessment
D. H. Auston, A. A. Ballman, P. Bhattacharya, G. J. Bjorklund, C. Bowden, R. W. Boyd, P. S. Brody, R. Burnham, R. L. Byer, G. Carter, D. Chemla, M. Dagenais, G. Dohler, U. Efron, D. Eimerl, R. S. Feigelson, J. Feinberg, B. J. Feldman, A. F. Garito, E. M. Garmire, H. M. Gibbs, A. M. Glass, L. S. Goldberg, R. L. Gunshor, T. K. Gustafson, R. W. Hellwarth, A. E. Kaplan, P. L. Kelley, F. J. Leonberger, R. S. Lytel, A. Majerfeld, N. Menyuk, G. R. Meredith, R. R. Neurgaonkar, N. G. Peyghambarian, P. Prasad, G. Rakuljic, Y. Shen, P. W. Smith, J. Stamatoff, G. I. Stegeman, G. Stillman, C. L. Tang, H. Temkin, M. Thakur, G. C. Valley, P. A. Wolff, and C. Woods, Appl. Opt. 26, 211 (1987).
[Link] [PDF]
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G13. Nanocrystal Fluorescence in Photonic Bandgap Microcavities and Plasmonic Nanoantennas
S. G. Lukishova, J. M. Winkler, D. Mihaylova, A. Liapis, L. J. Bissell, D. Goldberg, V. M. Menon, Z. Shi, R. W. Boyd, G. Chen, and P. Prasad, Journal of Physics: Conference Series 594, 012005 (2015).
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G8. Quantum Weirdness in the Lab
R. W. Boyd, K. W. C. Chan, and M. N. O'Sullivan, Science 317, 1874 (2007).
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G4. Slow Light
Y. Okawachi, J. E. Sharping, A. L. Gaeta, M. S. Bigelow, A. Schweinsberg, R. W. Boyd, Z. Zhu, and D. J. Gauthier, Optics and Photonics News 16, 42 (2005).
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G2. The Impact of Charles H. Townes on Nonlinear Optics
R. W. Boyd, IEEE Journal of Selected Topics in Quantum Electronics 6, 881 (2000).
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G1. Enhanced Electro-Optic Response of Layered Composite Materials
R. L. Nelson, and R. W. Boyd, Optics and Photonics News 10, 28 (1999).
[Link]
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B13. Nonlinear Optics
Orad Reshef and Robert W. Boyd, a chapter in the Handbook of Laser Technology and Applications, Lasers: Principles and Operations (Volume One) Second Edition, Edited by Chunlei Guo and Subhash Chandra Singh
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B12. Proceedings of the International School of Physics “Enrico Fermi”
Quantum Imaging, R.W. Boyd, in Proceedings of the International School of Physics “Enrico Fermi” Course 197 “Foundations of Quantum Theory”, edited by E. M. Rasel, W. P. Schleich and S. Wölk, IOS, Amsterdam; SIF, Bologna) 2019.
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B11. Overview of Second- and Third-Order Nonlinear Optical Processes for Deep Imaging: Using Linear and Nonlinear Optical Methods
S. Murugkar, and R. Boyd, a chapter in Deep Imaging in Tissue and Biomedical Materials: Using Linear and Nonlinear Optical Methods (Pan Stanford, 2017), pp. 1-30.
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B9. Recent Progress in Weak Value Amplification and Direct Measurement
O. Magaña-Loaiza, M. Mirhosseini, and R. Boyd, a chapter in Proceedings of the International School of Physics “Enrico Fermi” Course 190 “Frontiers in Modern Optics” (IOS Press, 2016), pp. 77-101.
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B7. Causality in Superluminal Pulse Propagation
R. W. Boyd, D. J. Gauthier, and P. Narum, a chapter in Time in Quantum Mechanics - Vol. 2 (Springer, Berlin, Heidelberg, 2009), pp. 175-204.
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B6. Self-Focusing, Conical Emission, and Other Self-Action Effects in Atomic Vapors
P. Zerom, and R. W. Boyd, a chapter in Self-Focusing: Past and Present (Springer, New York, NY, 2009), pp. 231-251.
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B5. Nanocomposite Materials for Nonlinear Optics Based on Local Field Effects
J. E. Sipe, and R. W. Boyd, a chapter in Optical Properties of Nanostructured Random Media (Springer, Berlin, Heidelberg, 2002), pp. 1-19.
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B4. “Slow” and “Fast” Light
R. W. Boyd, and D. J. Gauthier, a chapter in Progress in Optics (Elsevier, 2002), pp. 497-530.
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B3. From Laser Beam Filamentation to Optical Solitons: The Influence of C. H. Townes on the Development of Modern Nonlinear Optics
E. M. Nagasako, and R. W. Boyd, a chapter in Amazing Light (Springer, New York, NY, 1996), pp. 507-514.
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B2. Local Field Effects in Enhancing the Nonlinear Susceptibility of Optical Materials
R. W. Boyd, J. J. Maki, and J. E. Sipe, a chapter in Nonlinear Optics (Elsevier, 1992), pp. 63-76.
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B1. Chaos in Nonlinear Optics
R. W. Boyd, and A. L. Gaeta, a chapter in Laser Optics of Condensed Matter (Springer, Boston, MA, 1991), pp. 99-105.
[Link]
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C24. Planar Chiral Metamaterials for Biosensing Applications
S. Murugkar, I. D. Leon, M. Horton, H. Qassim, J. Leach, and R. W. Boyd, in Plasmonics in Biology and Medicine X (International Society for Optics and Photonics, 2013), pp. 85970Y. [Link]
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C23. Development of a Slow-Light Spectrometer on a Chip
S. Murugkar, I. D. Leon, Z. Shi, G. Lopez-Galmiche, J. Salvail, E. Ma, B. Gao, A. C. Liapis, J. E. Vornehm, and R. W. Boyd, in Integrated Optics: Devices, Materials, and Technologies XVI (International Society for Optics and Photonics, 2012), pp. 82640T. [Link] [PDF]
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C21. Quantum key Distribution in a High-Dimensional State Space: Exploiting the Transverse Degree of Freedom of the Photon
R. W. Boyd, A. Jha, M. Malik, C. O'Sullivan, B. Rodenburg, and D. J. Gauthier, in Advances in Photonics of Quantum Computing, Memory, and Communication IV (International Society for Optics and Photonics, 2011), pp. 79480L. [Link] [PDF]
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C20. What are the Limits to the Time Delay Achievable Using “slow-Light” Methods?
R. W. Boyd, N. Lepeshkin, A. Schweinsberg, P. Zerom, G. Gehring, G. Piredda, Z. Shi, H. Shin, and Q. Park, in Complex Mediums VI: Light and Complexity (International Society for Optics and Photonics, 2005), pp. 592402. [Link]
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C19. Progress in Quantum Lithography
R. W. Boyd, H. J. Chang, H. Shin, and C. O'Sullivan-Hale, in Quantum Communications and Quantum Imaging III (International Society for Optics and Photonics, 2005), pp. 58930G. [Link]
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C16. Theory of Relativistic Harmonic Generation
Q. Park, R. W. Boyd, J. E. Sipe, and A. L. Gaeta, in Technical Digest. Summaries of Papers Presented at the Quantum Electronics and Laser Science Conference. Postconference Technical Digest (IEEE Cat. No.01CH37172) (2001), pp. 274-275. [PDF]
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C15. Influence of Local Field Effects on the Nonlinear Optical Properties of Composite Materials
R. W. Boyd, in National Science Foundation (NSF) Forum on Optical Science and Engineering (International Society for Optics and Photonics, 1995), pp. 136-142. [Link]
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C14. Experimental Study of Soliton Propagation Through 40 km of Dispersion-Decreasing Fiber
A. J. Stentz, R. W. Boyd, and A. F. Evans, in Coherence and Quantum Optics VII (Springer, Boston, MA, 1996), pp. 461-461. [Link]
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C12. Quantum Statistical Properties of Optical Phase Conjugation
A. L. Gaeta, and R. W. Boyd, in Coherence and Quantum Optics VI (Springer, Boston, MA, 1990), pp. 343-347. [Link]
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C11. Bistability and Chaos in Counterpropagating Laser Beams
D. J. Gauthier, M. S. Malcuit, and R. W. Boyd, in Coherence and Quantum Optics VI (Springer, Boston, MA, 1990), pp. 395-399. [Link]
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C10. Polarization Properties of Phase Conjugation by Degenerate Four-Wave Mixing In Saturable Absorbers
R. W. Boyd, D. J. Gauthier, M. Kauranen, M. S. Malcuit, and W. R. Tompkin, in Nonlinear Optical Beam Manipulation and High Energy Beam Propagation Through the Atmosphere (International Society for Optics and Photonics, 1989), pp. 58-66. [Link] [PDF]
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C8. Instabilities, Dynamics and Chaos in Nonlinear Optical Systems
N. B. Abraham, E. Arimondo, and R. W. Boyd, in Instabilities and Chaos in Quantum Optics II (Springer, Boston, MA, 1988), pp. 375-391. [Link]
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C7. Laser Beam Combining Through the Nonlinear Response Of A Strongly Driven Atomic Transition
K. R. MacDonald, M. T. Gruneisen, and R. W. Boyd, in Nonlinear Optical Beam Manipulation, Beam Combining, and Atmospheric Propagation (International Society for Optics and Photonics, 1988), pp. 169-175. [Link]
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C6. Nonlinear Optical Interactions in Low-Melting-Temperature Glasses Containing Organic Dyes
W. R. Tompkin, and R. W. Boyd, in Advances in Nonlinear Polymers and Inorganic Crystals, Liquid Crystals and Laser Media (International Society for Optics and Photonics, 1988), pp. 2-7. [Link]
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C5. Instabilities in the Propagation of Arbitrarily Polarized Counterpropagating Waves in a Nonlinear Kerr Medium
A. L. Gaeta, R. W. Boyd, P. W. Milonni, and J. R. Ackerhalt, in Optical Bistability III (Springer, Berlin, Heidelberg, 1986), pp. 302-305. [Link]
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C4. Instabilities in a Self-Pumped Barium Titanate Phase Conjugate Mirror
P. Narum, D. J. Gauthier, and R. W. Boyd, in Optical Bistability III (Springer, Berlin, Heidelberg, 1986), pp. 298-301. [Link]
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C3. Instabilities in Four-Wave Mixing
R. W. Boyd, A. L. Gaeta, D. J. Gauthier, M. S. Malcuit, and P. Narum, in Optical Chaos (International Society for Optics and Photonics, 1986), pp. 156-163. [Link]
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C2. Stimulated Brillouin Scattering With A Multimode Laser
M. D. Skeldon, P. Narum, and R. W. Boyd, in Nonlinear Optics and Applications (International Society for Optics and Photonics, 1986), pp. 93-100. [Link]
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C1. Continuously Tunable Sum-Frequency Generation Involving Sodium Rydberg States
R. W. Boyd, D. J. Gauthier, J. Krasinski, and M. S. Malcuit, in International Quantum Electronics Conference (Optical Society of America, 1984), pp. WII3. [Link]
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Saumya Choudhary, Light-Matter Interaction in Plasmonic Systems and Atomic Vapor, 2023. [PDF]
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Yiyu Zhou, Optical communication with structured photons propagating through dynamic, aberrating media, 2021. [PDF]
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Kashif Awan, Fabrication of III-V integrated photonic devices, 2018. [Link]
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Mohammad Mirhosseini, Quantum Information with Structured Light, 2015. [PDF]
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Andreas Liapis, Optical Time Delays in Structured Media, 2014.
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Petros Zerom, Image Reconstruction and Discrimination at Low Light Level, 2013.
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Mehul Malik, Secure Quantum Technologies, 2013.
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Aaron Schweinsberg, Studies of Slow Light with Applications in Optical Beam Steering, 2012.
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George M. Gehring, “Superluminal” Pulse Propagation Dynamics, 2011.
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Zhimin Shi, Fundamentals and Applications of Slow Light, 2010.
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Anand Kumar Jha, Coherence Properties of the Entangled Two-Photon Field Produced by Parametric Down-Conversion, 2009.
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Giovanni Piredda, Materials for Nonlinear Optics: Semicontinuous Gold Films and Fast Saturable Absorbers, 2008.
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Ksenia Dolgaleva, Local-Field Effects and Nanostructuring for Controlling Optical Properties and Enabling Novel Optical Phenomena, 2008. [Link]
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Sean J. Bentley, Transverse Effects in Nonlinear and Quantum Optics, 2004.
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Ryan Bennink, Frequency Conversion of Optical Signals Using Coherently Prepared Media, 2004.
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Matthew Bigelow, Ultra-Slow and Superluminal Light Propagation in Solids at Room Temperature, 2004.
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Vincent Wong, Coherent Population Trapping in Real and Artificial Atoms, 2004.
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John Heebner, Nonlinear Optical Whispering Gallery Microresonators for Photonics, 2003.
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Elna M. Nagasako, High-Gain Parametric Amplification for the Generation of Quantum States of Light, 2001.
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Robert L. Nelson, Composite Nonlinear Optical Materials, 1998.
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Mark W. Bowers, Phase Locking and Self-Phase Matching in Nonlinear Optics, 1997.
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Eric L. Buckland, Origin of the Third-Order Nonlinear Optical Response of Silica Fibers, 1997.
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Russell J. Gehr, Investigations of the Third-Order Nonlinear Optical Respoonse of Composite Materials, 1997.
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George L. Fischer, Third-Order Nonlinear Optical Properties of Composite Materials, 1996.
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Robert E. Bridges, Multi-Dimensional Effects of Intensity-Dependent Optical Nonlinearities on the Propagation of Light, 1995.
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Andrew J. Stentz, Aspects of the Generation and Propagation of Solitons in Optical Fibers, 1995.
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William V. Davis, Nonlinear Optical Modification to the Polarization and Noise Properties of a Laser Beam after Propagating through Atomic Potassium Vapor, 1993.
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Thomas R. Moore, Limitations to the Quality of Optical Phase Conjugation by Stimulated Brillouin Scattering, 1993.
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Martti Kauranen, Limitations to the Performance of Nonlinear Optical Processes Utilizing Atomic Vapors, 1992.
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Jeffery J. Maki, Linear and Nonlinear Optical Measurements of the Lorentz Local Field, 1991.
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Edward J. Miller, Ultrafast Stimulated Scattering, 1991.
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Alexander L. Gaeta, Stochastic and Deterministic Fluctuations in Stimulated Brillouin Scattering, 1990.
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Wayne R. Tompkin, Phase Conjugation by Four-wave Mixing in Dye-Doped Glasses, 1990.
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Daniel J. Gauthier, Instabilities and Chaos of Laser Beams Propagating through Nonlinear Optical Media, 1989.
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Mark T. Gruneisen, Two-Beam Coupling and Phase Conjugation by Resonant Nonlinear Optical Interactions, 1988.
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Mark D. Skeldon, Optical Phase Conjugation Enhanced by the Brillouin Interaction, 1988.
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Michelle S. Malcuit, Competition Effects in Nonlinear Optics, 1987.
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Mark A. Kramer, Nonlinear Optical Properties of Impurity-doped Solids, 1986.
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Donald J. Harter, Nondegenerate Four-Wave Mixing Enhanced by the a.c. Stark Effect, 1982.
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Quantum Photonics: Pioneering Advances and Emerging Applications.
Edited by Robert W. Boyd, Svetlana G. Lukishova, Victor N. Zadkov, (Eds.), 2019
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Self-Focusing, Past and Present.
Edited by R.W. Boyd, S.G. Lukishova, and Y.R. Shen, Springer, Berlin, 2009 (77,109 chapter downloads as of June 2019).
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Nonlinear Optics.
R. W. Boyd, Academic Press, Boston, 1992; Second Edition, 2003; and Third Edition 2008 (total sales 14,854 as of January 2016).
[Errata]
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Contemporary Nonlinear Optics.
edited by G. P. Agrawal and R. W. Boyd, Academic Press, Boston, 1992.
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Optical Instabilities.
edited by R.W. Boyd, M.G. Raymer, and L.M. Narducci, Cambridge University Press, Cambridge, 1986.
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Radiometry and the Detection of Optical Radiation.
John Wiley and Sons, New York, 1983.