My Research in Nanophotonics-Plasmonic and Light-Matter Interaction

My research has extensively explored the exciting frontier of nanophotonics and plasmonics, focusing on engineering light at the nanoscale for a variety of advanced applications. A central theme in my work involves designing and utilizing nanoantennas to control and enhance light-matter interactions. For instance, I’ve demonstrated the creation of superabsorbing, artificial metal films by constructing them from semiconductor nanoantennas, showcasing a novel way to manipulate light absorption beyond conventional limits. I have also investigated the intricate photonic-plasmonic coupling between gallium arsenide (GaAs) single nanowires and optical nanoantennas, which allows for precise control of light and its interaction with matter. This work extended to developing photonic-plasmonic coupled nanoantennas for polarization-controlled multispectral nanofocusing, enabling unprecedented control over light’s focus and polarization at the nanoscale.

Beyond fundamental light manipulation, my research has delved into nonlinear optical phenomena, specifically second-harmonic generation (SHG). I’ve explored how SHG scales with the size of gold nanoparticles and demonstrated significantly enhanced second-harmonic generation from novel InAs nano-wing structures grown on silicon. My work also includes generating second harmonic radiation from sub-stoichiometric silicon nitride thin films, highlighting new material platforms for nonlinear optics. Furthermore, I’ve developed and characterized vertical III-V V-shaped membranes epitaxially grown on patterned Si(001) substrates, showing their enhanced light scattering properties. Collectively, my research has contributed to pushing the boundaries of nanoscale optics, providing foundational knowledge and practical designs for next-generation optoelectronic devices, sensors, and energy technologies. the boundaries of nanoscale optics, providing foundational knowledge and practical designs for next-generation optoelectronic devices, sensors, and energy technologies.

These projects have been funded partly by Boston University under a program supported by AFOSR – Air Force Office of Scientific Research Program and by Stanford University.

Peer-reviewed publications

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Conference proceedings

Integration of metallic nanostructures on nanowires for modification of their optical properties
A. Casadei, E. Alarcon-Llado, E. F. Pecora, J. Trevino, C. Forestiere, D. Ruffer, E. Russo-Averchi, F. Matteini, G. Tutuncuoglu, M. Heiss, L. Dal Negro, A. Fontcuberta i Morral
Frontiers in Nanophotonics, CSF Conference 2015


Second harmonic excitation spectroscopy in studies of Fano-type coupling in plasmonic arrays
G. F. Walsh, J. Tervino, E. F. Pecora, L. Dal Negro
SPIE Optics + Photonics 2015


Engineering light coupling in single nanowire with metal nano-antennas
A. Casadei, J. Trevino, E. F. Pecora, E. Alarcò- Lladò, D. Ruffer, E. Russo-Averchi, G. Tutuncuoglu, F. Matteini, C. Forestiere, L. Dal Negro, A. Fontcuberta i Morral
International Conference on One dimensional Nanomaterials ICON 2013


Second-harmonic generation from plasmonic nanoantennas and arrays
A. Capretti, C. Forestiere, E. F. Pecora, G. Walsh, J. Trevino, S. Minissale, L. Dal Negro, G. Miano
The International Conference on Surface Plasmon Photonics SPP6


Second-harmonic generation in substoichiometric silicon nitride layers
E. F. Pecora, A. Capretti, G. Miano, L. Dal Negro
Bulletin of the American Physical Society, vol. 58, V1.00119


PostDoc at Boston University

Read my blog posts on my research in deep ultraviolet light technology, my research in light-emitting materials for microphotonics, my research in silicon nanostructures for light emission, and my research in nanophotonic-plasmonic and light-matter interaction.

Research projects

Nanoscale optical Emitters for High Density Information Processing using Photonic-Plasmonic Coupling in Coaxial Nanopillars, funded by AFOSR – Air Force Office of Scientific Research Program (September 2012 – August 2013)


Deterministic Aperiodic Structures for On-chip Nanophotonic and Nanoplasmonic Device Applications, funded by AFOSR – Air Force Office of Scientific Research Program (April 2012 – August 2012)


Sub-250 nm electron-beam-pumped semiconductor laser, funded by DARPA – Defense Advanced Research Projects Agency CMUVT Program under subcontract from Photon Systems Inc. (March 2011 – March 2012)


Peer-reviewed publications

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Conferences

Integration of metallic nanostructures on nanowires for modification of their optical properties
A. Casadei, E. Alarcon-Llado, E. F. Pecora, J. Trevino, C. Forestiere, D. Ruffer, E. Russo-Averchi, F. Matteini, G. Tutuncuoglu, M. Heiss, L. Dal Negro, A. Fontcuberta i Morral
Frontiers in Nanophotonics, CSF Conference 2015


Second harmonic excitation spectroscopy in studies of Fano-type coupling in plasmonic arrays
G. F. Walsh, J. Tervino, E. F. Pecora, L. Dal Negro
SPIE Optics + Photonics 2015


Engineering light coupling in single nanowire with metal nano-antennas
A. Casadei, J. Trevino, E. F. Pecora, E. Alarcò- Lladò, D. Ruffer, E. Russo-Averchi, G. Tutuncuoglu, F. Matteini, C. Forestiere, L. Dal Negro, A. Fontcuberta i Morral
International Conference on One dimensional Nanomaterials ICON 2013


Second-harmonic generation from plasmonic nanoantennas and arrays
A. Capretti, C. Forestiere, E. F. Pecora, G. Walsh, J. Trevino, S. Minissale, L. Dal Negro, G. Miano
The International Conference on Surface Plasmon Photonics SPP6


Sub-250nm room temperature optical gain from AlGaN materials with strong compositional fluctuations
E. F. Pecora, W. Zhang, H. Sun, A. Yu. Nikiforov, J. Yin, R. Paiella, T. D. Moustakas, L. Dal Negro
Bulletin of the American Physical Society, vol. 58, V1.00111


Second-harmonic generation in substoichiometric silicon nitride layers
E. F. Pecora, A. Capretti, G. Miano, L. Dal Negro
Bulletin of the American Physical Society, vol. 58, V1.00119


Rare-earth doped Si-rich ZnO for multiband near-infrared light emitting devices
E. F. Pecora, T. I. Murphy, L. Dal Negro
Bulletin of the American Physical Society, vol. 58, C23.00004


Nanopatterning of optically-active silicon nanowires
E. F. Pecora, N. Lawrence, P. Gregg, J. Trevino, P. Artoni, A. Irrera, F. Priolo, L. Dal Negro
Frontiers in Optics (FiO) – Novel Silicon Waveguides and Nanophotonics (FM4E)


Sub-250nm room temperature optical gain from AlGaN/AlN multiple quantum wells structures
E. F. Pecora, W. Zhang, L. Zhou, D. J. Smith, J. Yin, R. Paiella, L. Dal Negro, T. D. Moustakas
CLEO: Science and Innovations, CTh3D, CTh3D.5


Sub-250nm room-temperature optical gain from AlGaN/AlN multiple quantum dot structures
E. F. Pecora, W. Zhang, L. Zhou, D. J. Smith, J. Yin, R. Paiella, L. Dal Negro, T. D. Moustakas
Bulletin of the American Physical Society, vol. 57


Room temperature low threshold stimulated emission of electron beam-pumped AlGaN-based deep UV laser structures emitting below 250 nm
A. Nikiforov, W. Zhang, J. Woodward, J. Yin, E. Pecora, L. Zhou, L. Dal Negro, R. Paiella, D. Smith, T. Moustakas, A. Moldawer
Bulletin of the American Physical Society, vol. 57


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