We propose a method of generating maximally-polarization-entangled states by type-II spontaneous parametric down-conversion in Bragg reflection waveguides. Analytic expressions for the group velocities of down-converted modes are used to engineer zero group-velocity mismatch at the operating point, making the spectra of photons within a down-converted pair indistinguishable and thus leading to a maximally-polarization-entangled state. The results can be used for the creation and manipulation of polarization-entangled qubits entirely on a chip.6 page(s
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We study the frequency-angular line shape for a phase-matched nonlinear process producing entangled ...
Polarization-entangled photon pair states (PESs) are indispensable in several quantum protocols that...
We present a theoretical description of slab and ridge waveguides with multilayer claddings, such as...
Spontaneous parametric downconversion in Bragg reflection waveguides is shown to produce maximally p...
We demonstrate experimentally that spontaneous parametric down-conversion in an AlxGa1−xAs semicondu...
Creating miniature chip scale implementations of optical quantum information protocols is a dream fo...
Quantum states of photons such as entangled and single photons are indispensable components for appl...
We explore the potential of versatile and efficient entangled photon pair generation by spontaneous ...
Photonic-based qubits and integrated photonic circuits have enabled demonstrations of quantum inform...
Bragg reflection waveguides emitting broadband parametric downconversion (PDC) have been proven to b...
Entangled photon pair generation by spontaneous parametric downconversion in Bragg reflection wavegu...
In this paper, a configuration consisting in a pump propagating in an orthogonal direction with respe...
The concept of “flat optics” is quickly conquering different fields of photonics, but its implementa...
We study the frequency-angular line shape for a phase-matched nonlinear process producing entangled ...
Polarization-entangled photon pair states (PESs) are indispensable in several quantum protocols that...
We present a theoretical description of slab and ridge waveguides with multilayer claddings, such as...