Carlo Forestiere

Full Professor
Department of Electrical Engineering and Information Technology
University of Naples "Federico II"
Email: carlo.forestiere@unina.it
Web: https://nanophotonics.it
ORCID: https://orcid.org/0000-0003-2849-2513

Short Bio

I am a Full Professor at the University of Naples "Federico II" in Naples, Italy. My academic journey includes a postdoctoral research position at Boston University, USA (2011–2014), and visiting scholar appointments at Tel Aviv University, Israel (2017), and Boston University, USA (2008–2009). My research focuses on classical electrodynamics, macroscopic quantum electrodynamics, nanophotonics, linear and nonlinear electromagnetic scattering theory, metamaterials, and computational electromagnetics. Over the course of my career, I have published more than 70 peer-reviewed articles in international journals and contributed five chapters to academic books.

Academic Positions

Teaching

Funded Project

Institutional Activities

Publications

2026

  1. Miano, Giovanni; Cangemi, Loris Maria, Forestiere, Carlo, Modified Langevin noise formalism for multiple quantum emitters in dispersive electromagnetic environments out of equilibrium, Physical Review A, 113, 023720 (2026).
  2. Vincenzo Mottola, Antonello Tamburrino, Luca Bergamaschi, Andrea G. Chiariello, Emanuele Corsaro, Forestiere, Carlo, Guglielmo Rubinacci, Salvatore Ventre, QR-Recursive Compression of Volume Integral Equations for Electromagnetic Scattering by Large Metasurfaces, arXiv preprint, arXiv:2603.10586 (2026).
  3. Corsaro, Emanuele; Miano, Giovanni; Tamburrino, Antonello; Ventre, Salvatore and Forestiere, Carlo, Adjoint-Based Gradient Evaluation for Metasurface Inverse Design via Affine Geometric Transformations, arXiv preprint, arXiv:2603.15210 (2026).

2025

  1. Miano, Giovanni; Cangemi, Loris Maria, Forestiere, Carlo, Quantum emitter interacting with a dispersive dielectric object: A model based on the modified Langevin noise formalism, Nanophotonics, 14, (23) (2025).
  2. Miano, Giovanni; Cangemi, Loris Maria, Forestiere, Carlo, Spectral densities of a dispersive dielectric sphere in the modified Langevin noise formalism, Physical Review A, 112, (3), 033712 (2025).
  3. Corsaro, Emanuele; Miano, Giovanni; Tamburrino, Antonello; Ventre, Salvatore and Forestiere, Carlo, Multilevel Fast Multipole Algorithm for Electromagnetic Scattering by Large Metasurfaces using Static Mode Representation, arXiv preprint, arXiv:2407.21724 (2025).
  4. Emanuele Corsaro; Filippo Capolino; Forestiere, Carlo, Exceptional Points in the Scattering Resonances of a Sphere Dimer, arXiv preprint, arXiv:2512.24104 (2025).

2024

  1. Forestiere, Carlo, Miano, Giovanni, A δ-free approach to quantization of transmission lines connected to lumped circuits, Physica Scripta, 99, (4) (2024).
  2. Forestiere, Carlo, Miano, Giovanni, Alù, Andrea, First-principles nanocircuit model of open electromagnetic resonators, Physical Review Applied, 22, (3) (2024).
  3. Forestiere, Carlo, Miano, Giovanni, Two-port quantum model of finite-length transmission lines coupled to lumped circuits, Physical Review A, 109, (4) (2024).

2023

  1. Forestiere, Carlo, Miano, Giovanni, Integral formulation of the macroscopic quantum electrodynamics in dispersive dielectric objects, Physical Review A, 107, (6) (2023).
  2. Pascale, Mariano, Mann, Sander A., Tzarouchis, Dimitrios C., Miano, Giovanni, Alu, Andrea, Forestiere, Carlo, Lower Bounds to the Q Factor of Electrically Small Resonators Through Quasistatic Modal Expansion, IEEE Transactions on Antennas and Propagation, 71, (5), 4350–4361 (2023).
  3. Forestiere, Carlo, Gravina, Giovanni, Miano, Giovanni, Rubinacci, Guglielmo, Tamburrino, Antonello, Static Surface Mode Expansion for the Electromagnetic Scattering from Penetrable Objects, IEEE Transactions on Antennas and Propagation, 71, (8), 6779–6793 (2023).

2022

  1. Miranda, Bruno, Moretta, Rosalba, Dardano, Principia, Rea, Ilaria, Forestiere, Carlo, De Stefano, Luca, H3 (Hydrogel-Based, High-Sensitivity, Hybrid) Plasmonic Transducers for Biomolecular Interactions Monitoring, Advanced Materials Technologies, 7, (9) (2022).
  2. Forestiere, Carlo, Miano, Giovanni, Operative approach to quantum electrodynamics in dispersive dielectric objects based on a polarization-mode expansion, Physical Review A, 106, (3) (2022).

2021

  1. Miranda, B., Moretta, R., De Martino, S., Dardano, P., Rea, I., Forestiere, C., De Stefano, L., A PEGDA hydrogel nanocomposite to improve gold nanoparticles stability for novel plasmonic sensing platforms, Journal of Applied Physics, 129, (3) (2021).
  2. Pascale, Mariano, Mann, Sander A., Forestiere, Carlo, Alù, Andrea, Bandwidth of Singular Plasmonic Resonators in Relation to the Chu Limit, ACS Photonics, 8, (11), 3249–3260 (2021).
  3. Tramontano, Chiara, Miranda, Bruno, Chianese, Giovanna, De Stefano, Luca, Forestiere, Carlo, Pirozzi, Marinella, Rea, Ilaria, Design of gelatin‐capped plasmonic‐diatomite nanoparticles with enhanced galunisertib loading capacity for drug delivery applications, International Journal of Molecular Sciences, 22, (19) (2021).
  4. Forestiere, Carlo, Miano, Giovanni, Miranda, Bruno, Electromagnetic Scattering by Networks of High-Permittivity Thin Wires, Physical Review Applied, 16, (1) (2021).
  5. Miranda, Bruno, Rea, Ilaria, Dardano, Principia, Forestiere, Carlo, De Stefano, Luca, Hybrid Plasmonic Nanomaterials: Functional Platforms for Bio and Food, Book chapter, p. 623 (2021).
  6. Miranda, Bruno, Rea, Ilaria, Dardano, Principia, De Stefano, Luca, Forestiere, Carlo, Recent advances in the fabrication and functionalization of flexible optical biosensors: Toward smart life-sciences applications, Biosensors, 11, (4) (2021).
  7. Forestiere, Carlo, Miano, Giovanni, Time-domain formulation of electromagnetic scattering based on a polarization-mode expansion and the principle of least action, Physical Review A, 104, (1) (2021).

2020

  1. Miranda, Bruno, Moretta, Rosalba, Dardano, Principia, Rea, Ilaria, Forestiere, Carlo, De Stefano, Luca, Hydrogel-based Nanocomposite Plasmonic Sensors for Biomedical Applications, Proceedings of the 2020 Italian Conference on Optics and Photonics (ICOP) (2020).
  2. Forestiere, Carlo, Miano, Giovanni, Rubinacci, Guglielmo, Pascale, Mariano, Tamburrino, Antonello, Tricarico, Roberto, Ventre, Salvatore, Magnetoquasistatic resonances of small dielectric objects, Physical Review Research, 2, (1) (2020).
  3. Forestiere, Carlo, Miano, Giovanni, Pascale, Mariano, Tricarico, Roberto, Quantum theory of radiative decay rate and frequency shift of surface plasmon modes, Physical Review A, 102, (4) (2020).
  4. Forestiere, Carlo, Miano, Giovanni, Rubinacci, Guglielmo, Resonance frequency and radiative Q-factor of plasmonic and dielectric modes of small objects, Physical Review Research, 2, (4) (2020).
  5. Tagliacozzo, A., De Nicola, S., Montemurro, D., Campagnano, G., Petrarca, C., Forestiere, C., Rubinacci, G., Tafuri, F., Pepe, G.P., Use of a spoof plasmon to optimize the coupling of infrared radiation to Josephson-junction fluxon oscillations, Physical Review B, 101, (1) (2020).

2019

  1. Forestiere, Carlo, Miano, Giovanni, Pascale, Mariano, Tricarico, Roberto, Directional scattering cancellation for an electrically large dielectric sphere, Optics Letters, 44, (8), 1972–1975 (2019).
  2. Forestiere, Carlo, Gravina, Giovanni, Miano, Giovanni, Pascale, Mariano, Tricarico, Roberto, Electromagnetic modes and resonances of two-dimensional bodies, Physical Review B, 99, (15) (2019).
  3. Forestiere, Carlo, Miano, Giovanni, Pascale, Mariano, Tricarico, Roberto, Electromagnetic scattering resonances of quasi-1-D nanoribbons, IEEE Transactions on Antennas and Propagation, 67, (8), 5497–5506 (2019).
  4. Tricarico, Roberto, Forestiere, C., Miano, Giovanni, Pascale, Mariano, Field quantization in arbitrarily-shaped metal nanoparticles, Proceedings of the 2019 International Conference on Electromagnetics in Advanced Applications (ICEAA), p. 1240 (2019).
  5. Pascale, Mariano, Miano, Giovanni, Tricarico, Roberto, Forestiere, Carlo, Full-wave electromagnetic modes and hybridization in nanoparticle dimers, Scientific Reports, 9, (1) (2019).
  6. Pascale, Mariano, Tricarico, Roberto, Miano, Giovann, Forestiere, C., Full-wave mode hybridization in nanoparticle dimers, Proceedings of the 2019 International Conference on Electromagnetics in Advanced Applications (ICEAA), p. 1239 (2019).
  7. Forestiere, Carlo, Gravina, Giovanni, Miano, Giovanni, Pascale, Mariano, Tricarico, Roberto, Theory of Fano Resonances in the electromagnetic scattering from two-dimensional bodies, Proceedings of the 2019 International Conference on Electromagnetics in Advanced Applications (ICEAA), 1233–1234 (2019).

2018

  1. Forestiere, Carlo, Miano, Giovanni, Pascale, Mariano, Tricarico, Roberto, A full-retarded spectral technique for the analysis of fano resonances in a dielectric nanosphere, Fano Resonances in Optics and Microwaves, Springer Series in Optical Sciences, 219, 185–218 (2018).
  2. Maffucci, Antonio, Chiariello, Andrea G., Forestiere, Carlo, Miano, Giovanni, Electrical Propagation on Carbon Nanotubes From Electrodynamics to Circuit Models, Nano-Semiconductors: Devices and Technology, 1–28 (2018).
  3. He, Y., Razi, M., Forestiere, C., Dal Negro, L., Kirby, R.M., Uncertainty quantification guided robust design for nanoparticles’ morphology, Computer Methods in Applied Mechanics and Engineering, 336, 578–593 (2018).
  4. Forestiere, Carlo, Miano, Giovanni, Rubinacci, Guglielmo, Tamburrino, Antonello, Tricarico, Roberto, Ventre, Salvatore, Volume Integral Formulation for the Calculation of Material Independent Modes of Dielectric Scatterers, IEEE Transactions on Antennas and Propagation, 66, (5), 2505–2514 (2018).

2017

  1. Forestiere, Carlo, Miano, Giovanni, Rubinacci, Guglielmo, Tamburrino, Antonello, Udpa, Lalita, Ventre, Salvatore, A frequency stable volume integral equation method for anisotropic scatterers, IEEE Transactions on Antennas and Propagation, 65, (3), 1224–1235 (2017).
  2. Forestiere, C., Miano, G., Maffucci, A., Boag, A., Slepyan, G., An equivalent circuit model for the electromagnetic scattering from coupled quantum dots, Proceedings of the 2017 International Conference on Electromagnetics in Advanced Applications (ICEAA), 615–618 (2017).
  3. Miano, Giovanni, Forestiere, Carlo, Boag, Amir, Slepyan, Gregory, Maffucci, Antonio, On small signal equivalent circuit models for quantum dots, International Journal of Circuit Theory and Applications, 45, (7), 935–950 (2017).
  4. Forestiere, Carlo, Miano, Giovanni, On the nanoparticle resonances in the full-retarded regime, Journal of Optics, 19, (7) (2017).
  5. Pascale, Mariano, Miano, Giovanni, Forestiere, Carlo, Spectral theory of electromagnetic scattering by a coated sphere, Journal of the Optical Society of America B, 34, (7), 1524–1535 (2017).

2016

  1. Rosell, Anders, Ye, Chaofeng, Krishna, Vijay, Karpenko, Oleksii, Tamburrino, Antonello, Forestiere, Carlo, Udpa, Lalita, Udpa, Satish S., Rubinacci, Guglielmo, Ventre, Salvatore, Electromagnetic NDT of composite materials: Experimental tests and numerical models, CAMX 2016: The Composites and Advanced Materials Expo (2016).
  2. Forestiere, Carlo, He, Yanyan, Wang, Ren, Kirby, Robert M., Dal Negro, Luca, Inverse Design of Metal Nanoparticles' Morphology, ACS Photonics, 3, (1), 68–78 (2016).
  3. Forestiere, Carlo, Miano, Giovanni, Material-independent modes for electromagnetic scattering, Physical Review B, 94, (20) (2016).
  4. Forestiere, Carlo, Rubinacci, Guglielmo, Tamburrino, Antonello, Ventre, Salvatore, Udpa, Lalita, Ye, Chaofeng, Numerical Modelling for Electromagnetic Testing of Composite Anisotropic Materials, Studies in Applied Electromagnetics and Mechanics, 41, 26–33 (2016).
  5. Malafronte, Anna, Capretti, Antonio, Pepe, Giovanni P., Forestiere, Carlo, Miano, Giovanni, Auriemma, Finizia, De Rosa, Claudio, Di Girolamo, Rocco, Simple Theoretical Considerations for Block-Copolymer-Based Plasmonic Metamaterials, Macromolecular Symposia, 359, (1), 72–78 (2016).

2015

  1. Wang, Ren, Forestiere, Carlo, Dal Negro, Luca, Radiative properties of diffractively-coupled optical nano-antennas with helical geometry, Optics Express, 23, (20), 25496–25508 (2015).

2014

  1. Forestiere, Carlo, Dal Negro, Luca, Miano, Giovanni, Cloaking of arbitrarily shaped objects with homogeneous coatings, Physical Review B, 89, (20) (2014).
  2. Forestiere, Carlo, Handin, Alex, Dal Negro, Luca, Enhancement of Molecular Fluorescence in the UV Spectral Range Using Aluminum Nanoantennas: On the Role of Nanoparticle Shape and Near-Field Coupling, Plasmonics, 9, (3), 715–725 (2014).
  3. Capretti, Antonio, Forestiere, Carlo, Dal Negro, Luca, Miano, Giovanni, Full-Wave Analytical Solution of Second-Harmonic Generation in Metal Nanospheres, Plasmonics, 9, (1), 151–166 (2014).
  4. Casadei, Alberto, Pecora, Emanuele F., Trevino, Jacob, Forestiere, Carlo, Rüffer, Daniel, Russo-Averchi, Eleonora, Matteini, Federico, Tutuncuoglu, Gozde, Heiss, Martin, Fontcuberta I Morral, Anna, Dal Negro, Luca, Photonic-plasmonic coupling of GaAs single nanowires to optical nanoantennas, Nano Letters, 14, (5), 2271–2278 (2014).
  5. Capretti, Antonio, Pecora, Emanuele F., Forestiere, Carlo, Dal Negro, Luca, Miano, Giovanni, Size-dependent second-harmonic generation from gold nanoparticles, Physical Review B, 89, (12) (2014).

2013

  1. Negro, Luca Dal, Forestiere, Carlo, Lawrence, Nathaniel, Lee, Sylvanus, Trevino, Jacob, Walsh, Gary, Aperiodic Order in Nanoplasmonics, Plasmonics: Theory and Applications, Challenges and Advances in Computational Chemistry and Physics, 15, 329–377 (2013).
  2. Negro, Luca Dal, Forestiere, Carlo, Lawrence, Nathaniel, Lee, Sylvanus, Trevino, Jacob, Walsh, Gary, Aperiodic order in nanoplasmonics, Plasmonics: Theory and Applications, Challenges and Advances in Computational Chemistry and Physics, 15, 329–377 (2013).
  3. Capretti, Antonio, Auriemma, Finizia, De Rosa, Claudio, Di Girolamo, Rocco, Forestiere, Carlo, Miano, Giovanni, Pepe, Giovanni, Block-copolymer-based plasmonic metamaterials, Proceedings of SPIE, 8771, Photonic and Phononic Properties of Engineered Nanostructures III (2013).
  4. Pecora, Emanuele Francesco, Walsh, Gary F., Forestiere, Carlo, Handin, Alex, Russo-Averchi, Eleonora, Dalmau-Mallorqui, Anna, Canales-Mundet, Ignasi, Fontcuberta I Morral, Anna, Negro, Luca Dal, Enhanced second harmonic generation from InAs nano-wing structures on silicon, Nanoscale, 5, (21), 10163–10170 (2013).
  5. Forestiere, Carlo, Capretti, Antonio, Dal Negro, Luca, Rubinacci, Guglielmo, Tamburrino, Antonello, Miano, Giovanni, Numerical methods for the electromagnetic simulation of complex plasmonic nanostructures, Optics of Aperiodic Structures: Fundamentals and Device Applications, 311–367 (2013).
  6. Chiariello, Andrea G., Forestiere, Carlo, Miano, Giovanni, Maffucci, Antonio, Scattering properties of carbon nanotubes, COMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic Engineering, 32, (6), 1793–1808 (2013).
  7. Forestiere, Carlo, Capretti, Antonio, Miano, Giovanni, Surface integral method for second harmonic generation in metal nanoparticles including both local-surface and nonlocal-bulk sources, Journal of the Optical Society of America B, 30, (9), 2355–2364 (2013).
  8. Forestiere, Carlo, Dal Negro, Luca, Miano, Giovanni, Theory of coupled plasmon modes and Fano-like resonances in subwavelength metal structures, Physical Review B, 88, (15) (2013).

2012

  1. Trevino, Jacob, Forestiere, Carlo, Negro, Luca Dal, Broadband and wide-angle scattering in aperiodic spiral arrays for ultra-thin film solar cells enhancement, Frontiers in Optics 2012 (2012).
  2. Chiariello, A.G., Forestiere, C., Maffucci, A., Maksimenko, S.A., Miano, G., Slepyan, G. Ya., Electrical propagation models for single- and multi-wall carbon nanotubes, Journal of Nanoelectronics and Optoelectronics, 7, (1), 12–16 (2012).
  3. Iadarola, Giovanni, Forestiere, Carlo, Dal Negro, Luca, Villone, Fabio, Miano, Giovanni, GPU-accelerated T-matrix algorithm for light-scattering simulations, Journal of Computational Physics, 231, (17), 5640–5652 (2012).
  4. Forestiere, Carlo, Pasquale, Alyssa J., Capretti, Antonio, Miano, Giovanni, Tamburrino, Antonello, Lee, Sylvanus Y., Reinhard, Björn M., Negro, Luca Dal, Genetically engineered plasmonic nano-arrays, Conference paper (2012).
  5. Forestiere, Carlo, Pasquale, Alyssa J., Capretti, Antonio, Miano, Giovanni, Tamburrino, Antonello, Lee, Sylvanus Y., Reinhard, Björn M., Dal Negro, Luca, Genetically engineered plasmonic nanoarrays, Nano Letters, 12, (4), 2037–2044 (2012).
  6. Capretti, Antonio, Walsh, Gary F., Minissale, Salvatore, Trevino, Jacob, Forestiere, Carlo, Miano, Giovanni, Dal Negro, Luca, Multipolar second harmonic generation from planar arrays of Au nanoparticles, Optics Express, 20, (14), 15797–15806 (2012).
  7. Capretti, Antonio, Walsh, Gary, Minissale, Salvatore, Trevino, Jacob, Forestiere, Carlo, Miano, Giovanni, Negro, Luca Dal, Multipolar second harmonic generation from plasmonic arrays, Conference paper (2012).
  8. Lee, Sylvanus Y., Forestiere, Carlo, Pasquale, Alyssa J., Walsh, Gary F., Trevino, Jacob, Romagnoli, Marco, Dal Negro, Luca, Plasmon-enhanced isotropic structural coloration of metal films with homogenized Pinwheel nanoparticle arrays, Conference paper (2012).
  9. Lee, Sylvanus Y., Forestiere, Carlo, Pasquale, Alyssa J., Walsh, Gary F., Trevino, Jacob, Romagnoli, Marco, Negro, Luca Dal, Plasmon-enhanced isotropic structural coloration of metal films with homogenized pinwheel nanoparticle arrays, Conference paper (2012).
  10. Trevino, Jacob, Forestiere, Carlo, Di, Giuliana, Yerci, Selcuk, Priolo, Francesco, Negro, Luca Dal, Plasmonic-photonic arrays with aperiodic spiral order for ultra-thin film solar cells, Optics Express, 20, (103), A418–A430 (2012).
  11. Forestiere, Carlo, Iadarola, Giovanni, Rubinacci, Guglielmo, Tamburrino, Antonello, Negro, Luca Dal, Miano, Giovanni, Surface integral formulations for the design of plasmonic nanostructures, Journal of the Optical Society of America A, 29, (11), 2314–2327 (2012).
  12. Forestiere, Carlo, Maffucci, Antonio, Maksimenko, Sergey A., Miano, Giovanni, Ya Slepyan, Gregory, Transmission-line model for multiwall carbon nanotubes with intershell tunneling, IEEE Transactions on Nanotechnology, 11, (3), 554–564 (2012).
  13. Conesa-Boj, Sònia, Russo-Averchi, Eleonora, Dalmau-Mallorqui, Anna, Trevino, Jacob, Pecora, Emanuele F., Forestiere, Carlo, Handin, Alex, Ek, Martin, Zweifel, Ludovit, Wallenberg, L. Reine, Rüffer, Daniel, Heiss, Martin, Troadec, David, Dal Negro, Luca, Caroff, Philippe, Fontcuberta I Morral, Anna, Vertical "III-V" V-shaped nanomembranes epitaxially grown on a patterned Si[001] substrate and their enhanced light scattering, ACS Nano, 6, (12), 10982–10991 (2012).

2011

  1. Forestiere, C., Miano, G., Chiariello, A.G., Maffucci, A., Maksimenko, S.A., Slepyan, G. Ya., Electrodynamics of multiwall carbon nanotube interconnects, Proceedings of the 2011 International Conference on Electromagnetics in Advanced Applications (ICEAA), 1109–1112 (2011).
  2. Forestiere, Carlo, Iadarola, Giovanni, Dal Negro, Luca, Miano, Giovanni, Near-field calculation based on the T-matrix method with discrete sources, Journal of Quantitative Spectroscopy and Radiative Transfer, 112, (14), 2384–2394 (2011).
  3. Forestiere, Carlo, Maffucci, Antonio, Miano, Giovanni, On the evaluation of the number of conducting channels in multiwall carbon nanotubes, IEEE Transactions on Nanotechnology, 10, (6), 1221–1223 (2011).
  4. Walsh, Gary F., Forestiere, Carlo, Dal Negro, Luca, Plasmon-enhanced depolarization of reflected light from arrays of nanoparticle dimers, Optics Express, 19, (21), 21081–21090 (2011).
  5. Lee, Sylvanus Y., Forestiere, Carlo, Pasquale, Alyssa J., Trevino, Jacob, Walsh, Gary, Galli, Paola, Romagnoli, Marco, Negro, Luca Dal, Plasmon-enhanced structural coloration of metal films with isotropic Pinwheel nanoparticle arrays, Optics Express, 19, (24), 23818–23830 (2011).
  6. Miano, Giovanni, Forestiere, Carlo, Maffucci, Antonio, Maksimenko, Sergey A., Slepyan, Gregory Ya., Signal propagation in carbon nanotubes of arbitrary chirality, IEEE Transactions on Nanotechnology, 10, (1), 135–149 (2011).

2010

  1. Forestiere, Carlo, Maffucci, Antonio, Miano, Giovanni, Hydrodynamic model for the signal propagation along carbon nanotubes, Journal of Nanophotonics, 4, (1) (2010).
  2. Forestiere, Carlo, Donelli, Massimo, Walsh, Gary F., Zeni, Edoardo, Miano, Giovanni, Negro, Luca Dal, Particle-swarm optimization of broadband nanoplasmonic arrays, Optics Letters, 35, (2), 133–135 (2010).
  3. Chiariello, Andrea G., Forestiere, Carlo, Maffucci, Antonio, Miano, Giovanni, Scattering properties of carbon nanotube arrays, International Journal of Microwave and Wireless Technologies, 2, (5), 445–452 (2010).

2009

  1. Forestiere, Carlo, Miano, Giovanni, Maffucci, Antonio, A generalized model for the signal propagation along single- and multi-walled carbon nanotubes with arbitrary chirality, Proceedings of the 2009 International Conference on Electromagnetics in Advanced Applications (ICEAA), 50–53 (2009).
  2. d'Aquino, Massimiliano, Serpico, Claudio, Miano, Giovanni, Forestiere, Carlo, A novel formulation for the numerical computation of magnetization modes in complex micromagnetic systems, Journal of Computational Physics, 228, (17), 6130–6149 (2009).
  3. Forestiere, Carlo, Miano, Giovanni, Serpico, Claudio, D'Aquino, Massimiliano, Dal Negro, Luca, Dipolar mode localization and spectral gaps in quasi-periodic arrays of ferromagnetic nanoparticles, Physical Review B, 79, (21) (2009).
  4. Forestiere, C., D'Aquino, M., Miano, G., Serpico, C., Finite element computations of resonant modes for small magnetic particles, Journal of Applied Physics, 105, (7) (2009).
  5. Forestiere, Carlo, Walsh, Gary F., Miano, Giovanni, Dal Negro, Luca, Nanoplasmonics of prime number arrays, Optics Express, 17, (26), 24288–24303 (2009).
  6. Forestiere, Carlo, Miano, Giovanni, Rubinacci, Gugliemo, Dal Negro, Luca, Role of aperiodic order in the spectral, localization, and scaling properties of plasmon modes for the design of nanoparticle arrays, Physical Review B, 79, (8) (2009).
  7. Forestiere, Carlo, Miano, Giovanni, Boriskina, Svetlana V., Dal Negro, Luca, The role of nanoparticle shapes and deterministic aperiodicity for the design of nanoplasmonic arrays, Optics Express, 17, (12), 9648–9661 (2009).

Talks at International Conferences

2025

  1. [INVITED] Quantum emitter interacting with a dispersive dielectric object: a model based on the modified Langevin noise formalism , IEEE International Symposium on Antennas and Propagation & USNC-URSI Radio Science Meeting, Ottawa (Canada), 10-15 July (2025).
  2. [INVITED] Quantum emitter interacting with a dispersive dielectric object: a model based on the modified Langevin noise formalism , PIERS 5-9 November (2025).
  3. [INVITED] Multilevel Fast Multipole Algorithm for Electromagnetic Scattering by Large Metasurfaces using Static Mode Representation , PIERS 5-9 November (2025).
  4. Multilevel Fast Multipole Algorithm for Electromagnetic Scattering by Large Metasurfaces using Static Mode Representation , IEEE International Symposium on Antennas and Propagation & USNC-URSI Radio Science Meeting, Ottawa (Canada), 10-15 July (2025).
  5. Quantum emitter interacting with a dispersive dielectric object: a model based on the modified Langevin noise formalism , 25th International Symposium on Electromagnetic Theory (EMTS 2025), Bologna, 23–27 June (2025) .
  6. First-Principles Nanocircuit Model of Open Electromagnetic Resonators , 25th International Symposium on Electromagnetic Theory (EMTS 2025), Bologna, 23–27 June (2025) .
  7. Quantum emitter interacting with a dispersive dielectric object: a model based on the modified Langevin noise formalism , Secondo Congresso Nazionale NQSTI, 5–7 Febbraio (2025) .

2024

  1. [INVITED] An Operative Approach to Quantum Electrodynamics in Dispersive Dielectric Objects , NanoPlasm 2024, Grand Hotel San Michele (Italy), 17-21 June (2024).
  2. [INVITED] A δ-free approach to quantization of transmission lines connected to lumped circuits, IEEE APS/URSI, Florence (Italy), 10-15 July (2024).
  3. Analysis and Design of Large Metasurfaces , IPEM\&A 2024 Workshop on Inverse Problems in ElectroMagnetics and Applications, Aversa Italy 20 Sept 2024.
  4. Circuit Model of Open Electromagnetic Nanoresonators: Resonance Condition and Bandwidth , Metamaterials, Crete, (Greece), 9-14 September (2024) .
  5. Fast Multipole Algorithm for the Electromagnetic Scattering from Particle Arrays using a Static Modes Basis , Metamaterials, Crete, (Greece), 9-14 September (2024).

2023

  1. Integral Formulation of Macroscopic Quantum Electrodynamics in Dispersive Dielectric Objects, URSI International Symposium on Electromagnetic Theory 2023, Vancouver (Canada), 23-26 May (2023) .
  2. [INVITED] Circuit Model of Open Electromagnetic Nanoresonators: Resonance Condition and Bandwidth , URSI International Symposium on Electromagnetic Theory 2023, Vancouver (Canada), 23-26 May (2023) .
  3. Static surface mode expansion for the full-wave scattering from arrays of penetrable objects , URSI International Symposium on Electromagnetic Theory 2023, Vancouver (Canada), 23-26 May (2023) .
  4. Static surface mode expansion for the full-wave scattering from arrays of penetrable objects , Workshop on Light Scattering 2023, Leibniz-Institut für Werkstofforientierte Technologien - IWT, Bremen, Germany, 20. + 21 March 2023 .
  5. [INVITED] An Operative Approach to Quantum Electrodynamics in Dispersive Dielectric Objects Based on a Polarization Modal Expansion , EUCAP 17th European Conference on Antennas and Propagation 26-31 March 2023 .
  6. [INVITED] Integral Formulation of Macroscopic Quantum Electrodynamics in Dispersive Dielectric Objects , PhotonIcs and Electromagnetics Research Symposium (PIERS), Prague (Czech Republic) 3-6 July (2023) .
  7. Plasmonic and Dielectric Resonances of Homogeneous Objects: From Quasistatic Approximations to the Full-wave Regime , PhotonIcs and Electromagnetics Research Symposium (PIERS), Prague (Czech Republic) 3-6 July (2023) .
  8. [INVITED] Static surface mode expansion for the full-wave scattering from arrays of penetrable objects , PhotonIcs and Electromagnetics Research Symposium (PIERS), Prague (Czech Republic) 3-6 July (2023) .

2022

  1. [INVITED] An Operative Approach to Quantum Electrodynamics in Dispersive Dielectric Objects Based on a Polarization Modal Expansion, IEEE International Symposium on Antennas and Propagation & USNC-URSI Radio Science Meeting, Denver (USA), 10-15 July (2022).
  2. [INVITED] Electroquasistatic and magnetoquasistatic resonances in light-matter interaction at the nanoscale, XXXVI Riunione Annuale dei Ricercatori di Elettrotecnica, Ancona (Italy), 23-24 June (2022).
  3. Static surface mode expansion for the full-wave scattering from penetrable objects, IEEE APS/URSI, Denver (USA), 10-15 July (2022).

2021

  1. [INVITED] Resonance frequency and radiative Q-factor of plasmonic and dielectric modes of small objects, European Optical Society Annual Meeting (EOSAM), Rome (Italy), 13-17 September (2021).
  2. Quantum theory of radiative decay rate and frequency shift of surface plasmon modes, URSI GASS 2021, Rome (Italy), 28 Aug – 4 Sep (2021).
  3. Electromagnetic Scattering by Networks of High-Permittivity Thin Wires, Metamaterials 2021, New York (USA), 20-25 September (2021).

2019

  1. [INVITED] On the Nanosphere Resonances in the Full-wave regime, Photonics & Electromagnetics Research Symposium (PIERS), Rome (Italy), 17-20 June (2019).
  2. [INVITED] Theory of Fano Resonances in the electromagnetic scattering from two-dimensional bodies, META 2019, Lisbon (Portugal), 23-26 July (2019).
  3. [INVITED] Field Quantization in Arbitrarily-Shaped Metal Nanoparticles, ICEAA 2019, Granada (Spain), 9-13 September (2019).
  4. [INVITED] Full-wave mode hybridization in nanoparticle dimers, ICEAA 2019, Granada (Spain), 9-13 September (2019).

2018

  1. [INVITED] Spectral Analysis of the Electromagnetic Scattering from Complex Conducting Surfaces, EOS Topical Meeting on Waves in Complex Photonics Media, Anacapri (Italy), 4-7 June (2018).
  2. Radiative Plasmon Decay Rates of Nanoparticles, NanoPlasm 2018, Grand Hotel San Michele (Italy), 10-15 June (2018).
  3. On the Nanoparticle Resonances in the Full Retarded Regime, Metamaterials 2018, Espoo (Finland), 27 Aug – 1 Sep (2018).
  4. Design of Particles Permittivity for Electromagnetic Scattering through Material-Independent Modes, Metamaterials 2018, Espoo (Finland), 27 Aug – 1 Sep (2018).

2017

  1. [INVITED] A Spectral Method for the Analysis of Fano-like Resonances of Nanoparticles in the Full-Retarded Regime, META 17, Incheon (Korea), 25-28 July (2017).
  2. [INVITED] An equivalent circuit model for the electromagnetic scattering from coupled quantum dots, ICEAA 17, Verona (Italy), 11-15 September (2017).
  3. Material-independent modes for electromagnetic scattering, Bremen Workshop on Light Scattering, Bremen (Germany), 20-21 February (2017).

2015

  1. Plasmonics, [INVITED] FISMAT 2015 – Italian National Conference on Condensed Matter Physics, Palermo (Italy), 28 Sep – 2 Oct (2015).

2014

  1. Theory of Fano-like resonances in subwavelength plasmonic nanostructures, Plasmonica Workshop, Sapienza University of Rome (Italy), 30 Jun – 2 Jul (2014).
  2. Design of homogeneous coatings for the cloaking of arbitrarily-shaped objects, SPIE Optics + Photonics 2014, San Diego (USA), 19-21 August (2014).

2013

  1. Surface Integral Equation for the Design of Plasmonic Nanostructures, APS March Meeting, Baltimore (USA), March 2013.
  2. Genetic Optimization of Plasmonic Nano-antennas, SPP6 – Surface Plasmons Photonics, Ottawa (Canada), 26-31 May (2013).
  3. Second-harmonic generation from plasmonic nanoantennas, SPP6 – Surface Plasmons Photonics, Ottawa (Canada), 26-31 May (2013).

2012

  1. Genetic Optimization of Optical Nanoantennas, APS March Meeting, Boston (USA), 27 Feb – 2 Mar (2012).
  2. Genetic Optimization of Optical Nanoantennas, FiO – Frontiers in Optics, Rochester (USA), 14-18 Oct (2012).
  3. Multipolar Second Harmonic Generation from Plasmonic Arrays, FiO – Frontiers in Optics, Rochester (USA), 14-18 Oct (2012).

2011

  1. Near-field calculation for non-spherical nanoparticle arrays in the framework of the T-matrix method, 7th Workshop on Numerical Methods for Optical Nano-Structures, Zurich (Switzerland), 4-6 July (2011).

2010

  1. Spheroidal Mie theory for the analysis of near-field enhancement in metal aperiodic nanoparticle arrays, Bremen Workshop on Light Scattering, Bremen (Germany), 11-12 Mar (2010).
  2. Electrical propagation models for single and multi-walled carbon nanotubes, Nanocarbon Photonics & Optoelectronics, Koli (Finland), 2-6 Aug (2010).

2008

  1. Localized dipolar modes and spectral gaps in quasi-periodic 1D arrays of magnetic nanoparticles, Joint European Magnetic Symposia (JEMS), Dublin (Ireland), 14-19 Sep (2008).