Quantum error correction is an essential ingredient for quantum computation. The standard descriptions of how to implement active error correction assume ideal resources such as projective measurements and instantaneous gate operations. Unfortunately in practice such resources are not realizable in most quantum computing architectures and it is not clear how such error correction implementations will perform under more realistic conditions. Motivated by this we examine schemes for implementing active error correction that use a more modest set of resources. This leads to new implementations of error correction that are continuous in time, and thus described by continuous dynamical maps. We evaluate the performance of such schemes using nume...
Continuous quantum error correction has been found to have certain advantages over discrete quantum ...
UnrestrictedQuantum information theory is based on the premise of manipulating quantum systems. Deco...
Abstract. The accelerated development of quantum technology has reached a pivotal point. Early in 20...
International audienceThe storage and processing of quantum information are susceptible to external ...
It is argued that the existing schemes of fault-tolerant quantum computation designed for discrete-t...
The main ideas of quantum error correction are introduced. These are encoding, extraction of syndrom...
UnrestrictedQuantum effects can be harnessed to manipulate information in a desired way. Quantum sys...
We present a discussion of the continuous-time quantum error correction introduced by J. P. Paz and ...
Continuous quantum error correction has been found to have certain advantages over discrete quantum ...
The development of quantum computers requires not only experimental advances, but also theoretical e...
It was once widely believed that quantum computation would never become a reality. However, the disc...
Continuous quantum error correction has been found to have certain advantages over discrete quantum ...
Quantum measurement theory describes the dynamics of a quantum system when it transfers information ...
If noisy-intermediate-scale-quantum-era quantum computers are to perform useful tasks, they will nee...
We demonstrate that continuous-variable quantum error correction based on Gaussian ancilla states an...
Continuous quantum error correction has been found to have certain advantages over discrete quantum ...
UnrestrictedQuantum information theory is based on the premise of manipulating quantum systems. Deco...
Abstract. The accelerated development of quantum technology has reached a pivotal point. Early in 20...
International audienceThe storage and processing of quantum information are susceptible to external ...
It is argued that the existing schemes of fault-tolerant quantum computation designed for discrete-t...
The main ideas of quantum error correction are introduced. These are encoding, extraction of syndrom...
UnrestrictedQuantum effects can be harnessed to manipulate information in a desired way. Quantum sys...
We present a discussion of the continuous-time quantum error correction introduced by J. P. Paz and ...
Continuous quantum error correction has been found to have certain advantages over discrete quantum ...
The development of quantum computers requires not only experimental advances, but also theoretical e...
It was once widely believed that quantum computation would never become a reality. However, the disc...
Continuous quantum error correction has been found to have certain advantages over discrete quantum ...
Quantum measurement theory describes the dynamics of a quantum system when it transfers information ...
If noisy-intermediate-scale-quantum-era quantum computers are to perform useful tasks, they will nee...
We demonstrate that continuous-variable quantum error correction based on Gaussian ancilla states an...
Continuous quantum error correction has been found to have certain advantages over discrete quantum ...
UnrestrictedQuantum information theory is based on the premise of manipulating quantum systems. Deco...
Abstract. The accelerated development of quantum technology has reached a pivotal point. Early in 20...