n this contribution, we demonstrate the first integrated gallium arsenide (GaAs) ring resonator for second harmonic generation (SHG) on a GaAs-on-insulator platform. Such resonators exhibit high nonlinear optical coefficients, a strong optical confinement, and intrinsic quality factors exceeding 2.6 × 105, which makes them very attractive for nonlinear optical applications. The fabricated resonators exhibit a great potential for frequency conversion: when 61 μW of pump power at 2 μm wavelength is coupled into the cavity, the absolute internal conversion efficiency is 4%. We predict an external SHG efficiency beyond 1 000 000%/W based on the GaAs resonance devices. Such nonlinear resonant devices of GaAs and its aluminum GaAs alloy can be di...
Recent advances in nonlinear optics have revolutionized integrated photonics, providing on-chip solu...
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
Using a hydrodynamic approach, we examine bulk- and surface-induced second- and third-harmonic gener...
In this contribution, we demonstrate the first integrated gallium arsenide (GaAs) ring resonator for...
In this contribution, we demonstrate the first integrated gallium arsenide (GaAs) ring resonator for...
Tremendous scientific progress has been achieved through the development of nonlinear integrated pho...
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
We demonstrated ultra-efficient frequency comb generation in AlGaAs-on-insulator ring resonators tha...
Nonlinear optics is the study of the interaction between light and matters. It originated from the f...
Recent advances in nonlinear optics have revolutionized integrated photonics, providing on-chip solu...
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
Nonlinear optics is the study of the interaction between light and matters. It originated from the f...
Silicon photonics lacks a second-order nonlinear optical response in general because the typical con...
Recent advances in nonlinear optics have revolutionized integrated photonics, providing on-chip solu...
Recent advances in nonlinear optics have revolutionized integrated photonics, providing on-chip solu...
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
Using a hydrodynamic approach, we examine bulk- and surface-induced second- and third-harmonic gener...
In this contribution, we demonstrate the first integrated gallium arsenide (GaAs) ring resonator for...
In this contribution, we demonstrate the first integrated gallium arsenide (GaAs) ring resonator for...
Tremendous scientific progress has been achieved through the development of nonlinear integrated pho...
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
We demonstrated ultra-efficient frequency comb generation in AlGaAs-on-insulator ring resonators tha...
Nonlinear optics is the study of the interaction between light and matters. It originated from the f...
Recent advances in nonlinear optics have revolutionized integrated photonics, providing on-chip solu...
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
Nonlinear optics is the study of the interaction between light and matters. It originated from the f...
Silicon photonics lacks a second-order nonlinear optical response in general because the typical con...
Recent advances in nonlinear optics have revolutionized integrated photonics, providing on-chip solu...
Recent advances in nonlinear optics have revolutionized integrated photonics, providing on-chip solu...
We report on nonlinear frequency conversion from the telecom range via second harmonic generation (S...
Using a hydrodynamic approach, we examine bulk- and surface-induced second- and third-harmonic gener...