Tackling the qubit map** problem for NISQ-era quantum devices

G Li, Y Ding, Y ** using gate transformation and commutation
T Itoko, R Raymond, T Imamichi, A Matsuo - Integration, 2020 - Elsevier
This paper addresses quantum circuit map** for Noisy Intermediate-Scale Quantum
(NISQ) computers. Since NISQ computers constrain two-qubit operations to limited …

Circuit transformations for quantum architectures

AM Childs, E Schoute, CM Unsal - ar**
G Acampora, R Schiattarella - Neural Computing and Applications, 2021 - Springer
Quantum computers have become reality thanks to the effort of some majors in develo**
innovative technologies that enable the usage of quantum effects in computation, so as to …

Timing and resource-aware map** of quantum circuits to superconducting processors

L Lao, H Van Someren, I Ashraf… - IEEE Transactions on …, 2021 - ieeexplore.ieee.org
Quantum algorithms need to be compiled to respect the constraints imposed by quantum
processors, which is known as the map** problem. The map** procedure will result in …

MUQUT: Multi-constraint quantum circuit map** on NISQ computers

D Bhattacharjee, AA Saki, M Alam… - 2019 IEEE/ACM …, 2019 - ieeexplore.ieee.org
Rapid advancement in the domain of quantum technologies have opened up researchers to
the real possibility of experimenting with quantum circuits, and simulating small-scale …

Advantages and limitations of quantum routing

A Bapat, AM Childs, AV Gorshkov, E Schoute - PRX Quantum, 2023 - APS
The swap gate is a ubiquitous tool for moving information on quantum hardware, yet it can
be considered a classical operation because it does not entangle product states. Genuinely …

Profiling quantum circuits for their efficient execution on single-and multi-core architectures

M Bandic, P le Henaff, A Ovide, P Escofet… - Quantum Science …, 2025 - iopscience.iop.org
Application-specific quantum computers offer the most efficient means to tackle problems
intractable by classical computers. Realizing these architectures necessitates a deep …