We demonstrate efficient, low power, continuous-wave four-wave mixing in the C-band, using a high index doped silica glass micro ring resonator having a Q-factor of 1.2 million. A record high conversion efficiency for this kind of device is achieved over a bandwidth of 20nm. We show theoretically that the characteristic low dispersion enables phase-matching over a tuning range > 160nm.Peer reviewed: YesNRC publication: Ye
A compact silicon ring resonator is demonstrated that allows simple electrical tuning of the ring co...
none8siA compact micro-ring resonator incorporating a tunable coupler section is presented for activ...
We demonstrate sub-picosecond wavelength conversion in the C-band via four wave mixing in a 45cm lon...
We demonstrate efficient, low power, continuous-wave four-wave mixing in the C-band, using a high in...
We present the first demonstration of ultra-low power four-wave-mixing in a highindex glass micro-ri...
We report ultra low power four-wave mixing in a zero-dispersive and two-photon adsorption free micro...
We report wavelength conversion of ultralow power CW light in integrated silica glass micro-ring res...
We present the first demonstration of CW nonlinear optics in integrated glass waveguides. We achieve...
All-optical integrated circuits bring the promise to vastly increase the bandwidth, improve the flex...
We report the measurement of low-power continuous-wave four-wave mixing in porous silicon microring ...
The development of highly non-linear silicon devices is a fundamental step towards the realization o...
Abstract — All-optical integrated circuits bring the promise to vastly increase the bandwidth, impro...
We experimentally demonstrate enhanced wavelength conversion in a Q 7500 deeply etched AlGaAsnanowav...
We report wavelength conversion via four wave mixing in showed in a CMOS compatible 5th order micror...
The development of highly non-linear silicon devices is a fundamental step towards the realization o...
A compact silicon ring resonator is demonstrated that allows simple electrical tuning of the ring co...
none8siA compact micro-ring resonator incorporating a tunable coupler section is presented for activ...
We demonstrate sub-picosecond wavelength conversion in the C-band via four wave mixing in a 45cm lon...
We demonstrate efficient, low power, continuous-wave four-wave mixing in the C-band, using a high in...
We present the first demonstration of ultra-low power four-wave-mixing in a highindex glass micro-ri...
We report ultra low power four-wave mixing in a zero-dispersive and two-photon adsorption free micro...
We report wavelength conversion of ultralow power CW light in integrated silica glass micro-ring res...
We present the first demonstration of CW nonlinear optics in integrated glass waveguides. We achieve...
All-optical integrated circuits bring the promise to vastly increase the bandwidth, improve the flex...
We report the measurement of low-power continuous-wave four-wave mixing in porous silicon microring ...
The development of highly non-linear silicon devices is a fundamental step towards the realization o...
Abstract — All-optical integrated circuits bring the promise to vastly increase the bandwidth, impro...
We experimentally demonstrate enhanced wavelength conversion in a Q 7500 deeply etched AlGaAsnanowav...
We report wavelength conversion via four wave mixing in showed in a CMOS compatible 5th order micror...
The development of highly non-linear silicon devices is a fundamental step towards the realization o...
A compact silicon ring resonator is demonstrated that allows simple electrical tuning of the ring co...
none8siA compact micro-ring resonator incorporating a tunable coupler section is presented for activ...
We demonstrate sub-picosecond wavelength conversion in the C-band via four wave mixing in a 45cm lon...