Transferring entangled states between photon pairs is essential in quantum communication. Semiconductor quantum dots are the leading candidate for generating polarization-entangled photons deterministically. Here we show for the first time swapping of entangled states between two pairs of photons emitted by a single dot. A joint Bell measurement heralds the successful generation of the Bell state Ψ+, yielding a fidelity of 0.81±0.04 and violating the CHSH and Bell inequalities. Our photon source matches atomic quantum memory frequencies, facilitating implementation of hybrid quantum repeaters.BMBF/Q.comERC/QD-NOMSIFW Excellence Progra
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
Entanglement between particles is a crucial resource in quantum information processing, an important...
The deterministic generation and manipulation of quantum states has attracted much interest ever sin...
We demonstrate the triggered emission of polarization-entangled photon pairs from the biexciton casc...
Semiconductor quantum dots are promising building blocks for quantum communication applications. Al-...
The development of scalable sources of non-classical light is fundamental to unlocking the technolog...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
The radiative biexciton-exciton decay in a semiconductor quantum dot (QD) has the potential of being...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
Semiconductor InAs/GaAs quantum dots grown by the Stranski-Krastanov method are among the leading ca...
More than 80 years have passed since the first publication on entangled quantum states. Over this pe...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
Entanglement between particles is a crucial resource in quantum information processing, an important...
The deterministic generation and manipulation of quantum states has attracted much interest ever sin...
We demonstrate the triggered emission of polarization-entangled photon pairs from the biexciton casc...
Semiconductor quantum dots are promising building blocks for quantum communication applications. Al-...
The development of scalable sources of non-classical light is fundamental to unlocking the technolog...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
The radiative biexciton-exciton decay in a semiconductor quantum dot (QD) has the potential of being...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
Semiconductor InAs/GaAs quantum dots grown by the Stranski-Krastanov method are among the leading ca...
More than 80 years have passed since the first publication on entangled quantum states. Over this pe...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
Global, secure quantum channels will require efficient distribution of entangled photons. Long dista...
Entanglement between particles is a crucial resource in quantum information processing, an important...