The orbital angular momentum (OAM) of light, associated with a helical structure of the wavefunction, has great potential in quantum photonics, as it allows a higher dimensional quantum space to be attached to each photon. Hitherto, however, the use of OAM has been hindered by dif?culties in its manipulation. Here, by making use of the recently demonstrated spin-OAM information transfer tools, we report the ?rst observation of the Hong–Ou–Mandel coalescence of two incoming photons having non-zero OAM into the same out-going mode of a beamsplitter. The coalescence can be switched on and off by varying the input OAM state of the photons. Such an effect has then been used to carry out the 1->2 universal optimal quantum cloning of OAM-encoded q...
A novel technique is introduced for separation of orbital-angular-momentum (OAM) states of light. Us...
Entangled photons are generally collected by detection systems that select their certain spatial mod...
Optimal quantum machines can be implemented by linear projective operations. In the present work a g...
The orbital angular momentum (OAM) of light, associated with a helical structure of the wavefunction...
Optimal quantum cloning is the process of making one or more copies of an arbitrary unknown input qu...
The bandwidth of any communication system, classical or quantum, is limited by the number of orthogo...
The optical ‘‘spin-orbit’’ coupling occurring in a suitably patterned nonuniform birefringent plate ...
The spatial modes of photons are one realization of a QuDit, a quantum system that is described in a...
The information carried by a photon can be encoded in one or more of many different degrees of freed...
Among all degrees of freedom offered by single photons, the orbital angular momentum (OAM) has a gre...
\u201cTwisted photons\u201d are photons carrying a well-defined nonzero value of orbital angular mom...
The identification of orbital angular momentum (OAM) as a fundamental property of a beam of light ne...
Any practical experiment utilizing the innate D-dimensional entanglement of the orbital angular mome...
A novel technique is introduced for separation of orbital-angular-momentum (OAM) states of light. Us...
Entangled photons are generally collected by detection systems that select their certain spatial mod...
Optimal quantum machines can be implemented by linear projective operations. In the present work a g...
The orbital angular momentum (OAM) of light, associated with a helical structure of the wavefunction...
Optimal quantum cloning is the process of making one or more copies of an arbitrary unknown input qu...
The bandwidth of any communication system, classical or quantum, is limited by the number of orthogo...
The optical ‘‘spin-orbit’’ coupling occurring in a suitably patterned nonuniform birefringent plate ...
The spatial modes of photons are one realization of a QuDit, a quantum system that is described in a...
The information carried by a photon can be encoded in one or more of many different degrees of freed...
Among all degrees of freedom offered by single photons, the orbital angular momentum (OAM) has a gre...
\u201cTwisted photons\u201d are photons carrying a well-defined nonzero value of orbital angular mom...
The identification of orbital angular momentum (OAM) as a fundamental property of a beam of light ne...
Any practical experiment utilizing the innate D-dimensional entanglement of the orbital angular mome...
A novel technique is introduced for separation of orbital-angular-momentum (OAM) states of light. Us...
Entangled photons are generally collected by detection systems that select their certain spatial mod...
Optimal quantum machines can be implemented by linear projective operations. In the present work a g...