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20182022
most citedOpenQL : A Portable Quantum Programming Framework for Quantum Accelerators

10 citations · 18 across the 4 of their papers we have counts for

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quant-ph20221 cited

Full-stack quantum computing systems in the NISQ era: algorithm-driven and hardware-aware compilation techniques

Medina Bandic, Sebastian Feld, Carmen G. Almudever

The progress in developing quantum hardware with functional quantum processors integrating tens of noisy qubits, together with the availability of near-term quantum algorithms has…

quant-ph20205 cited

Exploring a Double Full-Stack Communications-Enabled Architecture for Multi-Core Quantum Computers

Santiago Rodrigo, Sergi Abadal, Eduard Alarcón +1

Being a very promising technology, with impressive advances in the recent years, it is still unclear how quantum computing will scale to satisfy the requirements of its most powerf…

quant-ph20202 cited

Realizing Quantum Algorithms on Real Quantum Computing Devices

Carmen G. Almudever, Lingling Lao, Robert Wille +1

Quantum computing is currently moving from an academic idea to a practical reality. Quantum computing in the cloud is already available and allows users from all over the world to…

quant-ph202010 cited

OpenQL : A Portable Quantum Programming Framework for Quantum Accelerators

N. Khammassi, I. Ashraf, J. v. Someren +6

With the potential of quantum algorithms to solve intractable classical problems, quantum computing is rapidly evolving and more algorithms are being developed and optimized. Expre…

quant-ph2020

Realistic simulation of quantum computation using unitary and measurement channels

Ahmed Abid Moueddene, Nader Khammassi, Koen Bertels +1

The implementation and practicality of quantum algorithms highly hinge on the quality of operations within a quantum processor. Therefore, including realistic error models in quant…

quant-ph2019

Fault-tolerant Quantum Error Correction on Near-term Quantum Processors using Flag and Bridge Qubits

Lingling Lao, Carmen G. Almudever

Fault-tolerant (FT) computation by using quantum error correction (QEC) is essential for realizing large-scale quantum algorithms. Devices are expected to have enough qubits to dem…