8 papers · 1 filter
How Far Can You Do Nothing On a Quantum Computer?
Nitay Mayo, Tal Mor, Aryeh Lev Zabokritskiy
We present a route-resolved comparative assessment of Rigetti's Cepheus-1-108Q and IBM Heron-r2 processors using the established 'do-nothing' state-transfer protocol. Rather than p…
Benchmarking Quantum Computers via Protocols, Comparing IBM's Heron vs IBM's Eagle
Nitay Mayo, Tal Mor, Yossi Weinstein
As quantum computing hardware rapidly advances, objectively evaluating the capabilities and error rates of new processors remains a critical challenge for the field. A clear and re…
Benchmarking Quantum Computers via Protocols, Comparing Superconducting and Ion-Trap Quantum Technology
Nitay Mayo, Tal Mor, Yossi Weinstein
Both Superconducting and Ion-Trap are leading quantum architectures common in the current landscape of the quantum computing field, each with distinct characteristics and operation…
Towards Analyzing Formic Acid Using Classical and Quantum Methods
Omer Gurevich, Tal Mor, Ido Ram
Catalytic carbon fixation to formic acid is important for studying the reduction of carbon footprint and the emergence of life. Can discrete quantum exhaustive search merged with o…
Cybersecurity of Quantum Key Distribution Implementations
Ittay Alfassi, Ran Gelles, Rotem Liss +1
Practical implementations of Quantum Key Distribution (QKD) often deviate from the theoretical protocols, exposing the implementations to various attacks even when the underlying (…
Discretized Quantum Exhaustive Search for Variational Quantum Algorithms
Ittay Alfassi, Dekel Meirom, Tal Mor
Quantum computers promise a great computational advantage over classical computers, yet currently available quantum devices have only a limited amount of qubits and a high level of…