Creating miniature chip scale implementations of optical quantum information protocols is a dream for many in the quantum optics community. This is largely because of the promise of stability and scalability. Here we present a monolithically integratable chip architecture upon which is built a photonic device primitive called a Bragg reflection waveguide (BRW). Implemented in gallium arsenide, we show that, via the process of spontaneous parametric down conversion, the BRW is capable of directly producing polarization entangled photons without additional path difference compensation, spectral filtering or post-selection. After splitting the twin-photons immediately after they emerge from the chip, we perform a variety of correlation tests o...
We demonstrate experimentally that spontaneous parametric down-conversion in an AlxGa1−xAs semicondu...
Photonic-based qubits and integrated photonic circuits have enabled demonstrations of quantum inform...
Photonic-based qubits and integrated photonic circuits have enabled demonstrations of quantum inform...
Creating miniature chip scale implementations of optical quantum information protocols is a dream fo...
Creating miniature chip scale implementations of optical quantum information protocols is a dream fo...
Creating miniature chip scale implementations of optical quantum information protocols is a dream fo...
Creating miniature chip scale implementations of optical quantum information protocols is a dream fo...
Creating miniature chip scale implementations of optical quantum information protocols is a dream fo...
Creating miniature chip scale implementations of optical quantum information protocols is a dream fo...
Photonic-based qubits and integrated photonic circuits have enabled demonstrations of quantum inform...
Photonic-based qubits and integrated photonic circuits have enabled demonstrations of quantum inform...
Quantum states of photons such as entangled and single photons are indispensable components for appl...
Quantum states of photons such as entangled and single photons are indispensable components for appl...
The ability to combine various advanced functionalities on a single chip is a key issue for both cla...
We demonstrate experimentally that spontaneous parametric down-conversion in an AlxGa1−xAs semicondu...
We demonstrate experimentally that spontaneous parametric down-conversion in an AlxGa1−xAs semicondu...
Photonic-based qubits and integrated photonic circuits have enabled demonstrations of quantum inform...
Photonic-based qubits and integrated photonic circuits have enabled demonstrations of quantum inform...
Creating miniature chip scale implementations of optical quantum information protocols is a dream fo...
Creating miniature chip scale implementations of optical quantum information protocols is a dream fo...
Creating miniature chip scale implementations of optical quantum information protocols is a dream fo...
Creating miniature chip scale implementations of optical quantum information protocols is a dream fo...
Creating miniature chip scale implementations of optical quantum information protocols is a dream fo...
Creating miniature chip scale implementations of optical quantum information protocols is a dream fo...
Photonic-based qubits and integrated photonic circuits have enabled demonstrations of quantum inform...
Photonic-based qubits and integrated photonic circuits have enabled demonstrations of quantum inform...
Quantum states of photons such as entangled and single photons are indispensable components for appl...
Quantum states of photons such as entangled and single photons are indispensable components for appl...
The ability to combine various advanced functionalities on a single chip is a key issue for both cla...
We demonstrate experimentally that spontaneous parametric down-conversion in an AlxGa1−xAs semicondu...
We demonstrate experimentally that spontaneous parametric down-conversion in an AlxGa1−xAs semicondu...
Photonic-based qubits and integrated photonic circuits have enabled demonstrations of quantum inform...
Photonic-based qubits and integrated photonic circuits have enabled demonstrations of quantum inform...