Integrating nanophotonics with electronics promises revolutionary applications, from LiDAR to holographic displays. Although silicon photonics is maturing, realizing active nanophotonics in the ubiquitous bulk CMOS processes remains challenging. We introduce a fabless approach to embed active nanophotonics in bulk CMOS by co-designing the back-end-of-line metal layers for optical functionality. Using a 65nm CMOS process, we create plasmonic liquid crystal modulators with switching speeds 100x faster than commercial technologies. This zero-change nanophotonics method could equip mass-produced chips with optical communications, sensing and imaging. Embedding nanophotonics in the dominant electronics platform democratizes nanofabrication, spaw...
New high-speed photonic technologies and co-integration with electronics are required to keep up wit...
Metal-dielectric interfaces can support the waves known as surface plasmon polaritons, which are tig...
Plasmonics allows for an unprecedented miniaturization of optical elements. For instance, by combini...
Electronic circuits provide us with the ability to control the transport and storage of electrons. H...
Developing a compact, low power and high speed electro-optic modulator is crucial for overcoming the...
Materials with switchable optical characteristics can enable new types of optical technology that ca...
This dissertation is driven by a vision to continue improvements in system functionality by alleviat...
We develop a highly efficient approach for the modulation of photonic signals at the nanoscale, comb...
In this talk we will describe recent opportunities presented by plasmonics for chip-scale integratio...
Electronic and photonic technologies have transformed our lives-from computing and mobile devices, t...
Dielectric nanoantennas represent a new branch of nanophotonics that allows efficient control of lig...
High index-contrast nanophotonic devices are key components for future board-to-board and chip-to-ch...
We propose a plasmonic surface that produces an electrically controlled reflectance as a high-speed ...
Nanophotonics promise a dramatic scale reduction compared to contemporary photonic components. This ...
Modern silicon technology offers unprecedented spatial and temporal control of electrons with high l...
New high-speed photonic technologies and co-integration with electronics are required to keep up wit...
Metal-dielectric interfaces can support the waves known as surface plasmon polaritons, which are tig...
Plasmonics allows for an unprecedented miniaturization of optical elements. For instance, by combini...
Electronic circuits provide us with the ability to control the transport and storage of electrons. H...
Developing a compact, low power and high speed electro-optic modulator is crucial for overcoming the...
Materials with switchable optical characteristics can enable new types of optical technology that ca...
This dissertation is driven by a vision to continue improvements in system functionality by alleviat...
We develop a highly efficient approach for the modulation of photonic signals at the nanoscale, comb...
In this talk we will describe recent opportunities presented by plasmonics for chip-scale integratio...
Electronic and photonic technologies have transformed our lives-from computing and mobile devices, t...
Dielectric nanoantennas represent a new branch of nanophotonics that allows efficient control of lig...
High index-contrast nanophotonic devices are key components for future board-to-board and chip-to-ch...
We propose a plasmonic surface that produces an electrically controlled reflectance as a high-speed ...
Nanophotonics promise a dramatic scale reduction compared to contemporary photonic components. This ...
Modern silicon technology offers unprecedented spatial and temporal control of electrons with high l...
New high-speed photonic technologies and co-integration with electronics are required to keep up wit...
Metal-dielectric interfaces can support the waves known as surface plasmon polaritons, which are tig...
Plasmonics allows for an unprecedented miniaturization of optical elements. For instance, by combini...