Recent schemes to encode quantum information into the total angular momentum of light, defining rotation-invariant hybrid qubits composed of the polarization and orbital angular momentum degrees of freedom, present interesting applications for quantum information technology. However, there remains the question as to how detrimental effects such as random spatial perturbations affect these encodings. Here, we demonstrate that alignment-free quantum communication through a turbulent channel based on hybrid qubits can be achieved with unit transmission fidelity. In our experiment, alignment-free qubits are produced with q-plates and sent through a homemade turbulence chamber. The decoding procedure, also realized with q-plates, relies on both ...
One of the most challenging problems for the realization of a scalable quantum computer is to design...
Free-space communication allows one to use spatial mode encoding, which is susceptible to the effect...
We propose a hybrid quantum computing scheme where qubit degrees of freedom for computation are comb...
Recent schemes to encode quantum information into the total angular momentum of light, defining rota...
We describe an experimental implementation of a free-space 11-dimensional communication system using...
The orbital angular momentum of light (OAM) provides a promising approach for the implementation of ...
The orbital angular momentum of light (OAM) provides a promising approach for the implementation of ...
A single-end adaptive-optics (AO) module is experimentally demonstrated to mitigate the emulated atm...
Quantum communication with structured photons is topical, owing to the multidimensional state space ...
The effects of thick turbulence on transverse modes of light carrying orbital angular momentum are s...
Quantum key distribution is a promising candidate to ensure secure communication in the future. High...
“Twisted photons” are photons carrying a well-defined nonzero value of orbital angular momentum (OA...
The effects of atmospheric turbulence on a the channel capacity of a free-space quantum key distribu...
Entanglement is an invaluable resource to various quantum communication, metrology, and computing pr...
One of the most challenging problems for the realization of a scalable quantum computer is to design...
Free-space communication allows one to use spatial mode encoding, which is susceptible to the effect...
We propose a hybrid quantum computing scheme where qubit degrees of freedom for computation are comb...
Recent schemes to encode quantum information into the total angular momentum of light, defining rota...
We describe an experimental implementation of a free-space 11-dimensional communication system using...
The orbital angular momentum of light (OAM) provides a promising approach for the implementation of ...
The orbital angular momentum of light (OAM) provides a promising approach for the implementation of ...
A single-end adaptive-optics (AO) module is experimentally demonstrated to mitigate the emulated atm...
Quantum communication with structured photons is topical, owing to the multidimensional state space ...
The effects of thick turbulence on transverse modes of light carrying orbital angular momentum are s...
Quantum key distribution is a promising candidate to ensure secure communication in the future. High...
“Twisted photons” are photons carrying a well-defined nonzero value of orbital angular momentum (OA...
The effects of atmospheric turbulence on a the channel capacity of a free-space quantum key distribu...
Entanglement is an invaluable resource to various quantum communication, metrology, and computing pr...
One of the most challenging problems for the realization of a scalable quantum computer is to design...
Free-space communication allows one to use spatial mode encoding, which is susceptible to the effect...
We propose a hybrid quantum computing scheme where qubit degrees of freedom for computation are comb...