High-dimensional encoding using higher degrees of freedom has become topical in quantum communication protocols. When taking advantage of entanglement correlations, the state space can be made even larger. Here, we exploit the entanglement between two dimensional space and polarization qubits, to realize a four-dimensional quantum key distribution protocol. This is achieved by using entangled states as a basis, analogous to the Bell basis, rather than typically encoding information on individual qubits. The encoding and decoding in the required complementary bases is achieved by manipulating the Pancharatnam-Berry phase with a single optical element: a q-plate. Our scheme shows a transmission fidelity of 0.98 and secret key rate of 0.9 bits...
Several schemes have been proposed to extend quantum key distribution protocols aimed at improving t...
Encoding information in high-dimensional degrees of freedom of photons has led to new avenues in var...
Quantumkey distribution (QKD) systems often rely on polarization of light for encoding, thus limitin...
Quantum Key Distribution (QKD) provides a secure way of generating shared cryptographic keys between...
Quantum key distribution (QKD) systems often rely on polarization of light for encoding, thus limiti...
Quantum key distribution (QKD) systems often rely on polarization of light for encoding, thus limiti...
We experimentally demonstrate a quantum cryptography system based on photonic orbital angular moment...
We experimentally demonstrate a quantum cryptography system based on photonic orbital angular moment...
We experimentally demonstrate a quantum cryptography system based on photonic orbital angular moment...
We propose a practical quantum cryptographic scheme which combines high information capacity, such a...
We propose a practical quantum cryptographic scheme which combines high information capacity, such a...
We experimentally demonstrate a quantum cryptography system based on photonic orbital angular moment...
Quantum key distribution (QKD) systems often rely on polarization of light for encoding, thus limiti...
We propose a practical high-dimensional quantum key distribution protocol based on mutually partiall...
Combining the multiple degrees of freedom of photons has become topical in quantum communication and...
Several schemes have been proposed to extend quantum key distribution protocols aimed at improving t...
Encoding information in high-dimensional degrees of freedom of photons has led to new avenues in var...
Quantumkey distribution (QKD) systems often rely on polarization of light for encoding, thus limitin...
Quantum Key Distribution (QKD) provides a secure way of generating shared cryptographic keys between...
Quantum key distribution (QKD) systems often rely on polarization of light for encoding, thus limiti...
Quantum key distribution (QKD) systems often rely on polarization of light for encoding, thus limiti...
We experimentally demonstrate a quantum cryptography system based on photonic orbital angular moment...
We experimentally demonstrate a quantum cryptography system based on photonic orbital angular moment...
We experimentally demonstrate a quantum cryptography system based on photonic orbital angular moment...
We propose a practical quantum cryptographic scheme which combines high information capacity, such a...
We propose a practical quantum cryptographic scheme which combines high information capacity, such a...
We experimentally demonstrate a quantum cryptography system based on photonic orbital angular moment...
Quantum key distribution (QKD) systems often rely on polarization of light for encoding, thus limiti...
We propose a practical high-dimensional quantum key distribution protocol based on mutually partiall...
Combining the multiple degrees of freedom of photons has become topical in quantum communication and...
Several schemes have been proposed to extend quantum key distribution protocols aimed at improving t...
Encoding information in high-dimensional degrees of freedom of photons has led to new avenues in var...
Quantumkey distribution (QKD) systems often rely on polarization of light for encoding, thus limitin...