We report the measurement of low-power continuous-wave four-wave mixing in porous silicon microring resonators operating in the 1550 nm telecom band. Resonantly enhanced stimulated four-wave mixing has been measured in rings with 25 mu m radius and quality factor around 5000 for pump powers as low as a few hundreds of microwatts. A waveguide nonlinear parameter gamma = 20 W-1 m(-1) has been determined. These results suggest further research on porous silicon for low-power nonlinear optics, possibly taking advantage of its tunable porosity. Published by AIP Publishing
We present results on four-photon mixing in silicon waveguides beyond 2μm using signals derived from...
We present results on four-photon mixing in silicon waveguides beyond 2μm using signals derived from...
We present results on four-photon mixing in silicon waveguides beyond 2μm using signals derived from...
We report the measurement of low-power continuous-wave four-wave mixing in porous silicon microring ...
We report the measurement of low-power continuous-wave four-wave mixing in porous silicon microring ...
Third-order nonlinear optical phenomena have been intensively studied in integrated structures of cr...
We demonstrate four-wave mixing in an integrated structure made of porous silicon, namely a microrin...
Third-order nonlinear optical phenomena have been intensively studied in integrated structures of cr...
Third-order nonlinear optical phenomena have been intensively studied in integrated structures of cr...
Third-order nonlinear optical phenomena have been intensively studied in integrated structures of cr...
We demonstrate four-wave mixing in an integrated structure made of porous silicon, namely a microrin...
The development of highly non-linear silicon devices is a fundamental step towards the realization o...
The development of highly non-linear silicon devices is a fundamental step towards the realization o...
The development of highly non-linear silicon devices is a fundamental step towards the realization o...
The development of highly non-linear silicon devices is a fundamental step towards the realization o...
We present results on four-photon mixing in silicon waveguides beyond 2μm using signals derived from...
We present results on four-photon mixing in silicon waveguides beyond 2μm using signals derived from...
We present results on four-photon mixing in silicon waveguides beyond 2μm using signals derived from...
We report the measurement of low-power continuous-wave four-wave mixing in porous silicon microring ...
We report the measurement of low-power continuous-wave four-wave mixing in porous silicon microring ...
Third-order nonlinear optical phenomena have been intensively studied in integrated structures of cr...
We demonstrate four-wave mixing in an integrated structure made of porous silicon, namely a microrin...
Third-order nonlinear optical phenomena have been intensively studied in integrated structures of cr...
Third-order nonlinear optical phenomena have been intensively studied in integrated structures of cr...
Third-order nonlinear optical phenomena have been intensively studied in integrated structures of cr...
We demonstrate four-wave mixing in an integrated structure made of porous silicon, namely a microrin...
The development of highly non-linear silicon devices is a fundamental step towards the realization o...
The development of highly non-linear silicon devices is a fundamental step towards the realization o...
The development of highly non-linear silicon devices is a fundamental step towards the realization o...
The development of highly non-linear silicon devices is a fundamental step towards the realization o...
We present results on four-photon mixing in silicon waveguides beyond 2μm using signals derived from...
We present results on four-photon mixing in silicon waveguides beyond 2μm using signals derived from...
We present results on four-photon mixing in silicon waveguides beyond 2μm using signals derived from...