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quant-ph2026

Adaptive Parallelism-Aware Qubit Routing for Ion Trap QCCD Architectures

Anabel Ovide, Andreu Angles-Castillo, Carmen G. Almudever

Trapped-ion Quantum Charge-Coupled Device (QCCD) architectures promise scalability through interconnected trap zones and dynamic ion transport; however, this transport capability c…

quant-ph2025

Exploring operation parallelism vs. ion movement in ion-trapped QCCD architectures

Anabel Ovide, Carmen G. Almudever

Ion-trapped Quantum Charge-Coupled Device (QCCD) architectures have emerged as a promising alternative to scale single-trap devices by interconnecting multiple traps through ion sh…

quant-ph2024

Scaling and assigning resources on ion trap QCCD architectures

Anabel Ovide, Daniele Cuomo, Carmen G. Almudever

Ion trap technologies have earned significant attention as potential candidates for quantum information processing due to their long decoherence times and precise manipulation of i…

quant-ph2024

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

Medina Bandic, Pablo le Henaff, Anabel Ovide +8

Application-specific quantum computers offer the most efficient means to tackle problems intractable by classical computers. Realizing these architectures necessitates a deep under…

quant-ph2024

Revisiting the Mapping of Quantum Circuits: Entering the Multi-Core Era

Pau Escofet, Anabel Ovide, Medina Bandic +6

Quantum computing represents a paradigm shift in computation, offering the potential to solve complex problems intractable for classical computers. Although current quantum process…

quant-ph202321 cited

Hungarian Qubit Assignment for Optimized Mapping of Quantum Circuits on Multi-Core Architectures

Pau Escofet, Anabel Ovide, Carmen G. Almudever +2

Modular quantum computing architectures offer a promising alternative to monolithic designs for overcoming the scaling limitations of current quantum computers. To achieve scalabil…