Using spontaneous parametric down-conversion, we produce polarization-entangled states of two photons and characterize them using two-photon tomography to measure the density matrix. A controllable decoherence is imposed on the states by passing the photons through thick, adjustable birefringent elements. When the system is subject to collective decoherence, one particular entangled state is seen to be decoherence-free, as predicted by theory. Such decoherence-free systems may have an important role for the future of quantum computation and information processing
We study the properties of bisqueezed tripartite Gaussian states created by two spontaneous parametr...
Entangled photons play a pivotal role in the distribution of quantum information in quantum networks...
Photon entanglement, the cornerstone of quantum correlations, provides a level of coherence that is ...
Using spontaneous parametric down-conversion, we produce polarization-entangled states of two photon...
The nascent field of quantum information offers the promise of dramatic speed increases for certain...
An optical quantum channel that introduces decoherence in the polarization state by continuously con...
The quantum state of the photon pair generated from type-II spontaneous parametric down-conversion p...
One of the most intriguing features of entanglement is that entangled quantum systems exhibit exchan...
Developing techniques for characterizing quantum mechanical systems has been a major topic of resear...
Entanglement is at the heart of many unusual and counterintuitive features of quantum mechanics. Onc...
We address the problem of completely characterizing multi-particle states including loss of informat...
We investigate the quantum features, entanglement and resilience to losses, of multiphoton fields ge...
It is shown in this paper that decoherence-free subspace (DFS) of practical multi-photon polarizatio...
Simultaneous multidimensional entanglement can improve quantum communi-cation protocols, measurement...
A well controlled, triggered source of entangled photons is desirable for many applications in quant...
We study the properties of bisqueezed tripartite Gaussian states created by two spontaneous parametr...
Entangled photons play a pivotal role in the distribution of quantum information in quantum networks...
Photon entanglement, the cornerstone of quantum correlations, provides a level of coherence that is ...
Using spontaneous parametric down-conversion, we produce polarization-entangled states of two photon...
The nascent field of quantum information offers the promise of dramatic speed increases for certain...
An optical quantum channel that introduces decoherence in the polarization state by continuously con...
The quantum state of the photon pair generated from type-II spontaneous parametric down-conversion p...
One of the most intriguing features of entanglement is that entangled quantum systems exhibit exchan...
Developing techniques for characterizing quantum mechanical systems has been a major topic of resear...
Entanglement is at the heart of many unusual and counterintuitive features of quantum mechanics. Onc...
We address the problem of completely characterizing multi-particle states including loss of informat...
We investigate the quantum features, entanglement and resilience to losses, of multiphoton fields ge...
It is shown in this paper that decoherence-free subspace (DFS) of practical multi-photon polarizatio...
Simultaneous multidimensional entanglement can improve quantum communi-cation protocols, measurement...
A well controlled, triggered source of entangled photons is desirable for many applications in quant...
We study the properties of bisqueezed tripartite Gaussian states created by two spontaneous parametr...
Entangled photons play a pivotal role in the distribution of quantum information in quantum networks...
Photon entanglement, the cornerstone of quantum correlations, provides a level of coherence that is ...