7.2k citations · 7.2k across the 4 of their papers we have counts for
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Snowmass White Paper: Quantum Computing Systems and Software for High-energy Physics Research
Travis S. Humble, Andrea Delgado, Raphael Pooser +23
Quantum computing offers a new paradigm for advancing high-energy physics research by enabling novel methods for representing and reasoning about fundamental quantum mechanical phe…
Tensor Network Quantum Virtual Machine for Simulating Quantum Circuits at Exascale
Thien Nguyen, Dmitry Lyakh, Eugene Dumitrescu +3
The numerical simulation of quantum circuits is an indispensable tool for development, verification and validation of hybrid quantum-classical algorithms on near-term quantum co-pr…
XACC: A System-Level Software Infrastructure for Heterogeneous Quantum-Classical Computing
Alexander J. McCaskey, Dmitry I. Lyakh, Eugene F. Dumitrescu +2
Quantum programming techniques and software have advanced significantly over the past five years, with a majority focusing on high-level language frameworks targeting remote REST l…
Supplementary information for "Quantum supremacy using a programmable superconducting processor"
Frank Arute, Kunal Arya, Ryan Babbush +74
This is an updated version of supplementary information to accompany "Quantum supremacy using a programmable superconducting processor", an article published in the October 24, 201…
Establishing the Quantum Supremacy Frontier with a 281 Pflop/s Simulation
Benjamin Villalonga, Dmitry Lyakh, Sergio Boixo +6
Noisy Intermediate-Scale Quantum (NISQ) computers are entering an era in which they can perform computational tasks beyond the capabilities of the most powerful classical computers…
Validating Quantum-Classical Programming Models with Tensor Network Simulations
Alexander McCaskey, Eugene Dumitrescu, Mengsu Chen +2
The exploration of hybrid quantum-classical algorithms and programming models on noisy near-term quantum hardware has begun. As hybrid programs scale towards classical intractabili…