Here, we report double single-layer graphene electro-absorption modulators on Si optimized for energy-efficient and ultra-fast operation, demonstrating 67GHz bandwidth and 80Gbit/s data rate, in both ...
Information In this work, we report high-speed and energy-efficient electro-optic modulation in topological interface states of a 1D microstructure lattice on a silicon-nitride-loaded LNOI platform.
Information It provides a detailed assessment of each technique''s working principles, advantages and limitations, and potential applications in cutting-edge photonics. Additionally, it covers relevant topics
Information Abstract: Photonic integrated circuits (PICs) at cryogenic temperatures enable a wide range of applications in scalable classical and quantum systems for computing and sensing.
Information In this work, we used our nanotechnology to demonstrate E-O/O-E/O-E-O devices with extremely small capacitance and energy consumption that
Information We achieve this record performance by designing and fabricating a compact optical ring resonator modulator in a heterogeneous InP-on-Si platform,
Information In this paper, we report a high-speed silicon micro-ring modulator with a record-breaking speed of 128 Gbaud on-off keying (OOK) modulation.
Information Here we analyze the dissipation mechanisms for optical modulators operated in depletion, including both the dynamic and photocurrent dissipations.
Information Considering the system level integration with microelectronics, our investigation of energy-efficient, high-speed E-O modulators will only focus on devices that are compatible with silicon photonics.
Information Here, we report double single-layer graphene electro-absorption modulators on Si optimized for energy-efficient and ultra-fast operation, demonstrating 67GHz bandwidth and 80Gbit/s data rate, in both O
Information As a result, evaluation of optical modulators no longer requires an external amplifier and power supply, because direct driving is supported and evaluation can be performed without calibration using an
Information In this work, we used our nanotechnology to demonstrate E-O/O-E/O-E-O devices with extremely small capacitance and energy consumption that cannot be achieved with any other
Information Abstract: We analyze energy consumption in optical modulators operated in depletion and intended for low-power interconnect applications. We include dynamic dissipation from charging modulator
Information We achieve this record performance by designing and fabricating a compact optical ring resonator modulator in a heterogeneous InP-on-Si platform, where we optimize a multi-quantum-well
Information In this the following sections, we report the design, fabrication, and characterization results of a high-speed silicon-organic hybrid (SOH) PCW modulator with high modulation efficiency, low power
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