We investigate the performance of error mitigation via measurement of conserved symmetries on near-term devices. We present two protocols to measure conserved symmetries during the bulk of an experiment, and develop a third, zero-cost, post-processing protocol which is equivalent to a variant of the quantum subspace expansion. We develop methods for inserting global and local symmetries into quantum algorithms, and for adjusting natural symmetries of the problem to boost the mitigation of errors produced by different noise channels. We demonstrate these techniques on two- and four-qubit simulations of the hydrogen molecule (using a classical density-matrix simulator), finding up to an order of magnitude reduction of the error in obtaining t...
A major milestone of quantum error correction is to achieve the fault-tolerance threshold beyond whi...
The development of quantum computers requires not only experimental advances, but also theoretical e...
The development of a quantum computer presents one of the greatest challenges in science and enginee...
We investigate the performance of error mitigation via measurement of conserved symmetries on near-t...
Even with the recent rapid developments in quantum hardware, noise remains the biggest challenge for...
Variational quantum eigensolvers offer a small-scale testbed to demonstrate the performance of error...
Variational quantum eigensolvers offer a small-scale testbed to demonstrate the performance of error...
Variational quantum eigensolvers offer a small-scale testbed to demonstrate the performance of error...
State-of-the-art noisy intermediate-scale quantum computers require low-complexity techniques for th...
State-of-the-art noisy intermediate-scale quantum computers require low-complexity techniques for th...
State-of-the-art noisy intermediate-scale quantum computers require low-complexity techniques for th...
A major milestone of quantum error correction is to achieve the fault-tolerance threshold beyond whi...
We establish a symmetry-operator framework for designing quantum error-correcting (QEC) codes based ...
A major milestone of quantum error correction is to achieve the fault-tolerance threshold beyond whi...
A major milestone of quantum error correction is to achieve the fault-tolerance threshold beyond whi...
A major milestone of quantum error correction is to achieve the fault-tolerance threshold beyond whi...
The development of quantum computers requires not only experimental advances, but also theoretical e...
The development of a quantum computer presents one of the greatest challenges in science and enginee...
We investigate the performance of error mitigation via measurement of conserved symmetries on near-t...
Even with the recent rapid developments in quantum hardware, noise remains the biggest challenge for...
Variational quantum eigensolvers offer a small-scale testbed to demonstrate the performance of error...
Variational quantum eigensolvers offer a small-scale testbed to demonstrate the performance of error...
Variational quantum eigensolvers offer a small-scale testbed to demonstrate the performance of error...
State-of-the-art noisy intermediate-scale quantum computers require low-complexity techniques for th...
State-of-the-art noisy intermediate-scale quantum computers require low-complexity techniques for th...
State-of-the-art noisy intermediate-scale quantum computers require low-complexity techniques for th...
A major milestone of quantum error correction is to achieve the fault-tolerance threshold beyond whi...
We establish a symmetry-operator framework for designing quantum error-correcting (QEC) codes based ...
A major milestone of quantum error correction is to achieve the fault-tolerance threshold beyond whi...
A major milestone of quantum error correction is to achieve the fault-tolerance threshold beyond whi...
A major milestone of quantum error correction is to achieve the fault-tolerance threshold beyond whi...
The development of quantum computers requires not only experimental advances, but also theoretical e...
The development of a quantum computer presents one of the greatest challenges in science and enginee...