We experimentally demonstrate optical multicasting using Kerr frequency combs generated from a Si3N4 microresonator. We obtain Kerr combs in two states with different noise properties by varying the pump wavelength in the resonator and investigate the effect of Kerr combs on multicasting. Seven-fold multicasting of 20 Gbaud quadrature phase-shift-keyed signals and four-fold multicasting of 16-quadrature amplitude modulation signals have been achieved when low-phase-noise combs are input into a periodically poled lithium niobate waveguide. In addition, we find that the wavelength conversion efficiency in the PPLN waveguide for chaotic combs with high noise is similar to that for low-noise combs, while the signal quality of the multicast copy...
Microresonator frequency combs harness the nonlinear Kerr effect in an integrated optical cavity to ...
Designing and engineering microresonator dispersion are essential for generating microresonator freq...
International audienceWe investigate the phase noise performance of micro- and millimeter-wave signa...
We experimentally demonstrate 7-fold multicasting of 20-Gbaud QPSK signals based on Kerr frequency c...
2018-01-30A large number of precisely spaced spectral lines form an optical frequency comb, which en...
Microresonator optical frequency combs based on cascaded four-wave mixing are potentially attractive...
On-chip Kerr frequency combs are potentially promising to enhance many applications because of their...
Optical frequency combs have the potential to revolutionize terabit communications1. Generation of K...
Optical frequency combs allow for the precise measurement of optical frequencies and are used in a g...
Optical frequency combs can potentially provide an efficient light source for multi-terabit-per-seco...
Frequency combs can be generated in millimeter-sized optical resonators thanks to their ability to s...
International audienceThe optical frequency comb technology is one of the most important breakthroug...
We experimentally insert a flexible number of electro-optical (EO) comb lines into a Kerr frequency ...
Recently, on-chip comb generation methods based on nonlinear optical modulation in ultrahigh quality...
We experimentally investigate the dependence of Kerr comb generation, comb linewidth, and coherent s...
Microresonator frequency combs harness the nonlinear Kerr effect in an integrated optical cavity to ...
Designing and engineering microresonator dispersion are essential for generating microresonator freq...
International audienceWe investigate the phase noise performance of micro- and millimeter-wave signa...
We experimentally demonstrate 7-fold multicasting of 20-Gbaud QPSK signals based on Kerr frequency c...
2018-01-30A large number of precisely spaced spectral lines form an optical frequency comb, which en...
Microresonator optical frequency combs based on cascaded four-wave mixing are potentially attractive...
On-chip Kerr frequency combs are potentially promising to enhance many applications because of their...
Optical frequency combs have the potential to revolutionize terabit communications1. Generation of K...
Optical frequency combs allow for the precise measurement of optical frequencies and are used in a g...
Optical frequency combs can potentially provide an efficient light source for multi-terabit-per-seco...
Frequency combs can be generated in millimeter-sized optical resonators thanks to their ability to s...
International audienceThe optical frequency comb technology is one of the most important breakthroug...
We experimentally insert a flexible number of electro-optical (EO) comb lines into a Kerr frequency ...
Recently, on-chip comb generation methods based on nonlinear optical modulation in ultrahigh quality...
We experimentally investigate the dependence of Kerr comb generation, comb linewidth, and coherent s...
Microresonator frequency combs harness the nonlinear Kerr effect in an integrated optical cavity to ...
Designing and engineering microresonator dispersion are essential for generating microresonator freq...
International audienceWe investigate the phase noise performance of micro- and millimeter-wave signa...