We describe analytically and numerically the geometric phase arising from nonlinear frequency conversion and show that such a phase can be made non-reciprocal by momentum-dependent photonic transition. Such non-reciprocity is immune to the shortcomings imposed by dynamic reciprocity in Kerr and Kerr-like devices. We propose a simple and practical implementation, requiring only a single waveguide and one pump, while the geometric phase is controllable by the pump and promises robustness against fabrication errors
The optical geometric phase encoded by the in-plane spatial orientation of microstructures has promo...
We describe a design for phase-matched Bragg scattering for single-photon conversion between two arb...
In this study, we observe the nonlinear behavior of the two-photon geometric phase for polarization ...
We discuss the feasibility of a quantum nondemolition measurement (QND) of photon number based on cr...
We review the geometrical phases in a non planar Mach-Zehnder interferometer as a non adiabatic Ahax...
We theoretically show that multiport photonic lattices emulating driven quantum harmonic oscillators...
International audienceIt is shown that cascaded nonlinear optical frequency conversion over an inter...
Non-reciprocal devices, such as circulators and isolators, are indispensable components in classical...
We show that an evolving geometric phase induces a frequency shift. We report an optical experiment ...
We show that an evolving geometric phase induces a frequency shift. We report an optical experiment ...
International audienceWe describe and analyze a quasi-phase-matching scheme for nonlinear optical fr...
A new class of resonant exchange of power among three co-propagating modes in dielectric optical wav...
In an amplifier, nonlinear feedback from mismatched backward second-harmonic generation leads to str...
The nonadiabatic geometric phase for an arbitrary cyclic evolution of the state vector for a system ...
Reciprocity is a general, fundamental principle governing various physical systems, which ensures th...
The optical geometric phase encoded by the in-plane spatial orientation of microstructures has promo...
We describe a design for phase-matched Bragg scattering for single-photon conversion between two arb...
In this study, we observe the nonlinear behavior of the two-photon geometric phase for polarization ...
We discuss the feasibility of a quantum nondemolition measurement (QND) of photon number based on cr...
We review the geometrical phases in a non planar Mach-Zehnder interferometer as a non adiabatic Ahax...
We theoretically show that multiport photonic lattices emulating driven quantum harmonic oscillators...
International audienceIt is shown that cascaded nonlinear optical frequency conversion over an inter...
Non-reciprocal devices, such as circulators and isolators, are indispensable components in classical...
We show that an evolving geometric phase induces a frequency shift. We report an optical experiment ...
We show that an evolving geometric phase induces a frequency shift. We report an optical experiment ...
International audienceWe describe and analyze a quasi-phase-matching scheme for nonlinear optical fr...
A new class of resonant exchange of power among three co-propagating modes in dielectric optical wav...
In an amplifier, nonlinear feedback from mismatched backward second-harmonic generation leads to str...
The nonadiabatic geometric phase for an arbitrary cyclic evolution of the state vector for a system ...
Reciprocity is a general, fundamental principle governing various physical systems, which ensures th...
The optical geometric phase encoded by the in-plane spatial orientation of microstructures has promo...
We describe a design for phase-matched Bragg scattering for single-photon conversion between two arb...
In this study, we observe the nonlinear behavior of the two-photon geometric phase for polarization ...