The prospect of using the quantum nature of light for secure communication keeps spurring the search and investigation of suitable sources of entangled photons. A single semiconductor quantum dot is one of the most attractive, as it can generate indistinguishable entangled photons deterministically and is compatible with current photonic-integration technologies. However, the lack of control over the energy of the entangled photons is hampering the exploitation of dissimilar quantum dots in protocols requiring the teleportation of quantum entanglement over remote locations. Here we introduce quantum dot-based sources of polarization-entangled photons whose energy can be tuned via three-directional strain engineering without degrading the de...
Quantum information technology promises to offer incredible advantages over current digital systems,...
Transferring entangled states between photon pairs is essential in quantum communication. Semiconduc...
Semiconductor quantum dots offer an attractive route towards efficient and high-quality photon sourc...
The deterministic generation and manipulation of quantum states has attracted much interest ever sin...
We propose a new method of generating entangled photon pairs with wavelength on demand. The method u...
We propose a new method of generating triggered entangled photon pairs with wavelength on demand. Th...
We propose a new method of generating triggered entangled photon pairs with wavelength on demand. Th...
We propose a new method of generating triggered entangled photon pairs with wavelength on demand. Th...
Entanglement between particles is a crucial resource in quantum information processing, an important...
Single and entangled photon sources are fundamental building blocks of future light-based quantum te...
Triggered sources of entangled photon pairs are key components in most quantum communication protoco...
More than 80 years have passed since the first publication on entangled quantum states. Over this pe...
Many of the quantum information applications rely on indistinguishable sources of polarization-entan...
The development of scalable sources of non-classical light is fundamental to unlocking the technolog...
Semiconductor InAs/GaAs quantum dots grown by the Stranski-Krastanov method are among the leading ca...
Quantum information technology promises to offer incredible advantages over current digital systems,...
Transferring entangled states between photon pairs is essential in quantum communication. Semiconduc...
Semiconductor quantum dots offer an attractive route towards efficient and high-quality photon sourc...
The deterministic generation and manipulation of quantum states has attracted much interest ever sin...
We propose a new method of generating entangled photon pairs with wavelength on demand. The method u...
We propose a new method of generating triggered entangled photon pairs with wavelength on demand. Th...
We propose a new method of generating triggered entangled photon pairs with wavelength on demand. Th...
We propose a new method of generating triggered entangled photon pairs with wavelength on demand. Th...
Entanglement between particles is a crucial resource in quantum information processing, an important...
Single and entangled photon sources are fundamental building blocks of future light-based quantum te...
Triggered sources of entangled photon pairs are key components in most quantum communication protoco...
More than 80 years have passed since the first publication on entangled quantum states. Over this pe...
Many of the quantum information applications rely on indistinguishable sources of polarization-entan...
The development of scalable sources of non-classical light is fundamental to unlocking the technolog...
Semiconductor InAs/GaAs quantum dots grown by the Stranski-Krastanov method are among the leading ca...
Quantum information technology promises to offer incredible advantages over current digital systems,...
Transferring entangled states between photon pairs is essential in quantum communication. Semiconduc...
Semiconductor quantum dots offer an attractive route towards efficient and high-quality photon sourc...