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Multimode silicon photonics
Multimode silicon photonics is attracting more and more attention because the introduction
of higher-order modes makes it possible to increase the channel number for data …
of higher-order modes makes it possible to increase the channel number for data …
Photonic packaging: transforming silicon photonic integrated circuits into photonic devices
Dedicated multi-project wafer (MPW) runs for photonic integrated circuits (PICs) from Si
foundries mean that researchers and small-to-medium enterprises (SMEs) can now afford to …
foundries mean that researchers and small-to-medium enterprises (SMEs) can now afford to …
Self-calibrating programmable photonic integrated circuits
Programmable photonic integrated circuits (PICs) are dense assemblies of tunable elements
that provide flexible reconfigurability to enable different functions to be selected; however …
that provide flexible reconfigurability to enable different functions to be selected; however …
Multipurpose self-configuration of programmable photonic circuits
Programmable integrated photonic circuits have been called upon to lead a new revolution
in information systems by teaming up with high speed digital electronics and in this way …
in information systems by teaming up with high speed digital electronics and in this way …
Programmable frequency-bin quantum states in a nano-engineered silicon device
Photonic qubits should be controllable on-chip and noise-tolerant when transmitted over
optical networks for practical applications. Furthermore, qubit sources should be …
optical networks for practical applications. Furthermore, qubit sources should be …
Low-loss silicon platform for broadband mid-infrared photonics
Broadband mid-infrared (mid-IR) spectroscopy applications could greatly benefit from
today's well-developed, highly scalable silicon photonics technology; however, this platform …
today's well-developed, highly scalable silicon photonics technology; however, this platform …
Low power 50 Gb/s silicon traveling wave Mach-Zehnder modulator near 1300 nm
The wavelength band near 1300 nm is attractive for many telecommunications applications,
yet there are few results in silicon that demonstrate high-speed modulation in this band. We …
yet there are few results in silicon that demonstrate high-speed modulation in this band. We …
Waveguide integrated superconducting single-photon detectors implemented as near-perfect absorbers of coherent radiation
At the core of an ideal single-photon detector is an active material that absorbs and converts
every incident photon to a discriminable signal. A large active material favours efficient …
every incident photon to a discriminable signal. A large active material favours efficient …
Ultralow loss single layer submicron silicon waveguide crossing for SOI optical interconnect
We demonstrate compact, broadband, ultralow loss silicon waveguide crossings operating
at 1550 nm and 1310 nm. Cross-wafer measurement of 30 dies shows transmission …
at 1550 nm and 1310 nm. Cross-wafer measurement of 30 dies shows transmission …
Heralded single-phonon preparation, storage, and readout in cavity optomechanics
We show how to use the radiation pressure optomechanical coupling between a mechanical
oscillator and an optical cavity field to generate in a heralded way a single quantum of …
oscillator and an optical cavity field to generate in a heralded way a single quantum of …