most citedSpecial Session: Noisy Intermediate-Scale Quantum (NISQ) Computers -- How They Work, How They Fail, How to Test Them?

14 citations · 17 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph20231 cited

Optimal Partitioning of Quantum Circuits using Gate Cuts and Wire Cuts

Sebastian Brandhofer, Ilia Polian, Kevin Krsulich

A limited number of qubits, high error rates, and limited qubit connectivity are major challenges for effective near-term quantum computations. Quantum circuit partitioning divides…

quant-ph2023

Optimal Qubit Reuse for Near-Term Quantum Computers

Sebastian Brandhofer, Ilia Polian, Kevin Krsulich

Near-term quantum computations are limited by high error rates, the scarcity of qubits and low qubit connectivity. Increasing support for mid-circuit measurements and qubit reset i…

quant-ph202314 cited

Special Session: Noisy Intermediate-Scale Quantum (NISQ) Computers -- How They Work, How They Fail, How to Test Them?

Sebastian Brandhofer, Simon Devitt, Thomas Wellens +1

First quantum computers very recently have demonstrated "quantum supremacy" or "quantum advantage": Executing a computation that would have been impossible on a classical machine.…

quant-ph2023

SAT-Based Quantum Circuit Adaptation

Sebastian Brandhofer, Jinwoong Kim, Siyuan Niu +1

As the nascent field of quantum computing develops, an increasing number of quantum hardware modalities, such as superconducting electronic circuits, semiconducting spins, trapped…

quant-ph20232 cited

Error Analysis of the Variational Quantum Eigensolver Algorithm

Sebastian Brandhofer, Simon Devitt, Ilia Polian

Variational quantum algorithms have been one of the most intensively studied applications for near-term quantum computing applications. The noisy intermediate-scale quantum (NISQ)…