We consider the problem of optimally decoding a quantum error correction code -- that is to find the optimal recovery procedure given the outcomes of partial "check" measurements on the system. In general, this problem is NP-hard. However, we demonstrate that for concatenated block codes, the optimal decoding can be efficiently computed using a message passing algorithm. We compare the performance of the message passing algorithm with that of the widespread blockwise hard decoding technique. Our Monte Carlo results using the 5 qubit and Steane's code on a depolarizing channel demonstrate significant advantages of the message passing algorithms in two respects. 1) Optimal decoding increases by as much as 90% the error threshold below which t...
A quantum-convolutional code was introduced recently as an alternative way to protect vital quantum ...
When a logical qubit is protected using a quantum error-correcting code, the net effect of coding, d...
In this article we address the computational hardness of optimally decoding a quantum stabilizer cod...
When a logical qubit is protected using a quantum error-correcting code, the net effect of coding, d...
When a logical qubit is protected using a quantum error-correcting code, the net effect of coding, d...
When a logical qubit is protected using a quantum error-correcting code, the net effect of coding, d...
We analyze the resource overhead of recently proposed methods for universal fault-tolerant quantum c...
We demonstrate that there exists a universal, near-optimal recovery map—the transpose channel—for ap...
We demonstrate that there exists a universal, near-optimal recovery map—the transpose channel—for ap...
We analyze the resource overhead of recently proposed methods for universal fault-tolerant quantum c...
Concatenation of two quantum error-correcting codes with complementary sets of transversal gates can...
Concatenation of two quantum error-correcting codes with complementary sets of transversal gates can...
Concatenation of two quantum error-correcting codes with complementary sets of transversal gates can...
One of the founding results of lattice based cryptography is a quantum reduction from the Short Inte...
Recent progress in quantum cryptography and quantum computers has given hope to their imminent pract...
A quantum-convolutional code was introduced recently as an alternative way to protect vital quantum ...
When a logical qubit is protected using a quantum error-correcting code, the net effect of coding, d...
In this article we address the computational hardness of optimally decoding a quantum stabilizer cod...
When a logical qubit is protected using a quantum error-correcting code, the net effect of coding, d...
When a logical qubit is protected using a quantum error-correcting code, the net effect of coding, d...
When a logical qubit is protected using a quantum error-correcting code, the net effect of coding, d...
We analyze the resource overhead of recently proposed methods for universal fault-tolerant quantum c...
We demonstrate that there exists a universal, near-optimal recovery map—the transpose channel—for ap...
We demonstrate that there exists a universal, near-optimal recovery map—the transpose channel—for ap...
We analyze the resource overhead of recently proposed methods for universal fault-tolerant quantum c...
Concatenation of two quantum error-correcting codes with complementary sets of transversal gates can...
Concatenation of two quantum error-correcting codes with complementary sets of transversal gates can...
Concatenation of two quantum error-correcting codes with complementary sets of transversal gates can...
One of the founding results of lattice based cryptography is a quantum reduction from the Short Inte...
Recent progress in quantum cryptography and quantum computers has given hope to their imminent pract...
A quantum-convolutional code was introduced recently as an alternative way to protect vital quantum ...
When a logical qubit is protected using a quantum error-correcting code, the net effect of coding, d...
In this article we address the computational hardness of optimally decoding a quantum stabilizer cod...