Spatial adiabatic passage represents a new way to design integrated photonic devices. In conventional adiabatic passage, designs require smoothly varying waveguide separations. Here we show modelling of adiabatic passage devices where the waveguide separation is varied digitally. Despite digitisation, our designs show robustness against variations in the input wavelength and refractive index contrast of the waveguides relative to the cladding. This approach to spatial adiabatic passage opens new design strategies and hence the potential for new photonics devices
Quantum waveguides are one of the key components in the developement of quantum technologies that ex...
By offering effective modal volumes significantly less than a cubic wavelength, slot-waveguide cavit...
We observe clear evidence of adiabatic passage between photon populations via a four-wave mixing pro...
Using a femtosecond laser writing technique, we fabricate and characterise three-waveguide digital a...
We numerically demonstrate an optical waveguide structure for the coherent tunnelling adiabatic pass...
We present a new approach to long range coupling based on a combination of adiabatic passage and lat...
Single-mode waveguide designs frequently support higher order transverse modes, usually as a consequ...
In recent years, the concept of shortcuts to adiabaticity (STA), originally developed for speeding u...
International audienceWe propose an adiabatic method for the robust transfer of light between the tw...
La propagation d'ondes dans des guides optiques couplés et la dynamique de transfert de population d...
Quantum systems’ integration in chip-scale photonic circuits is the most promising way to succeed in...
Broadband spectral filters are highly sought-after in many integrated photonics applications such as...
Wave propagation in coupled optical waveguides and population dynamics in quantum systems composed o...
We study adiabatic light transfer in systems of two coupled waveguides with spatially varying detuni...
Adiabatic techniques have much potential to realize practical and robust optical waveguide devices. ...
Quantum waveguides are one of the key components in the developement of quantum technologies that ex...
By offering effective modal volumes significantly less than a cubic wavelength, slot-waveguide cavit...
We observe clear evidence of adiabatic passage between photon populations via a four-wave mixing pro...
Using a femtosecond laser writing technique, we fabricate and characterise three-waveguide digital a...
We numerically demonstrate an optical waveguide structure for the coherent tunnelling adiabatic pass...
We present a new approach to long range coupling based on a combination of adiabatic passage and lat...
Single-mode waveguide designs frequently support higher order transverse modes, usually as a consequ...
In recent years, the concept of shortcuts to adiabaticity (STA), originally developed for speeding u...
International audienceWe propose an adiabatic method for the robust transfer of light between the tw...
La propagation d'ondes dans des guides optiques couplés et la dynamique de transfert de population d...
Quantum systems’ integration in chip-scale photonic circuits is the most promising way to succeed in...
Broadband spectral filters are highly sought-after in many integrated photonics applications such as...
Wave propagation in coupled optical waveguides and population dynamics in quantum systems composed o...
We study adiabatic light transfer in systems of two coupled waveguides with spatially varying detuni...
Adiabatic techniques have much potential to realize practical and robust optical waveguide devices. ...
Quantum waveguides are one of the key components in the developement of quantum technologies that ex...
By offering effective modal volumes significantly less than a cubic wavelength, slot-waveguide cavit...
We observe clear evidence of adiabatic passage between photon populations via a four-wave mixing pro...