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quant-ph2025

A Hardware-Efficient Mølmer-Sørensen Gate for Superconducting Quantum Computers

M. AbuGhanem

The Mølmer-Sørensen gate, a cornerstone entangling operation in trapped-ion systems, represents a promising alternative to standard entangling gates in superconducting quantum ar…

quant-ph2025

Practical Fidelity Limits of Toffoli Gates in Superconducting Quantum Processors

M. AbuGhanem

High-fidelity multi-qubit gates are a critical resource for near-term quantum computing, as they underpin the execution of both quantum algorithms and fault-tolerant protocols. The…

quant-ph2025

A Toffoli Gate Decomposition via Echoed Cross-Resonance Gates

M. AbuGhanem

Quantum computing has garnered significant interest for its potential to solve certain computational problems much faster than the best-known classical algorithms. A fully function…

quant-ph2024

Information processing at the speed of light

M. AbuGhanem

In recent years, quantum computing has made significant strides, particularly in light-based technology. The introduction of quantum photonic chips has ushered in an era marked by…

quant-ph2024

IBM Quantum Computers: Evolution, Performance, and Future Directions

M. AbuGhanem

Quantum computers represent a transformative frontier in computational technology, promising exponential speedups beyond classical computing limits. IBM Quantum has led significant…

quant-ph2024

Comprehensive characterization of three-qubit Grover search algorithm on IBM's 127-qubit superconducting quantum computers

M. AbuGhanem

The Grover search algorithm is a pivotal advancement in quantum computing, promising a remarkable speedup over classical algorithms in searching unstructured large databases. Here,…