Reliable Quantum Communications based on Asymmetry in Purification and Coding

05/01/2023
by   Lorenzo Valentini, et al.
0

The reliable provision of entangled qubits is an essential precondition in a variety of schemes for distributed quantum computing. This is challenged by multiple nuisances, such as errors during the transmission over quantum links, but also due to degradation of the entanglement over time due to decoherence. The latter can be seen as a constraint on the latency of the quantum protocol, which brings the problem of quantum protocol design into the context of latency-reliability constraints. We address the problem through hybrid schemes that combine: (1) indirect transmission based on teleportation and purification; (2) direct transmission, based on quantum error correction (QEC). The intuition is that, at present, the quantum hardware offers low fidelity, which demands purification; on the other hand, low latency can be obtained by QEC techniques. It is shown that, in the proposed framework, the purification protocol gives rise to asymmetries that can be exploited by asymmetric quantum error correcting code (QECC), which sets the basis for unique hybrid purification and coding design. Our results show that ad-hoc asymmetric codes give, compared to conventional QEC, a performance boost and codeword size reduction both in a single link and in a quantum network scenario.

READ FULL TEXT
research
11/22/2019

Asymmetric entanglement-assisted quantum error-correcting codes and BCH codes

The concept of asymmetric entanglement-assisted quantum error-correcting...
research
03/02/2020

Improved Gilbert-Varshamov Bound for Entanglement-Assisted Asymmetric Quantum Error Correction by Symplectic Orthogonality

We propose and prove an existential theorem for entanglement-assisted as...
research
05/04/2023

The Quantum Internet: an Efficient Stabilizer states Distribution Scheme

Quantum networks constitute a major part of quantum technologies. They w...
research
07/04/2019

Resource reduction for distributed quantum information processing using quantum multiplexed photons

Distributed quantum information processing is based on the transmission ...
research
04/15/2020

A Polynomial Interpolation based Quantum Key Reconciliation Protocol: Error Correction without Information Leakage

In this work, we propose a novel key reconciliation protocol for the qua...
research
02/25/2020

Nonbinary Error-Detecting Hybrid Codes

Hybrid codes simultaneously encode both quantum and classical informatio...
research
08/26/2019

Simulation of a Dynamic, RuleSet-based Quantum Network

Similar to the classical Internet, the quantum Internet will require kno...

Please sign up or login with your details

Forgot password? Click here to reset