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20172026
most citedQuantum Computing for High-Energy Physics: State of the Art and Challenges. Summary of the QC4HEP Working Group

211 citations · 1.1k across the 47 of their papers we have counts for

collaborators
Showing 2024Show all

6 papers · 1 filter

quant-ph2024★ 15 cited

Dynamical simulations of many-body quantum chaos on a quantum computer

Laurin E. Fischer, Matea Leahy, Andrew Eddins +16

Quantum circuits with local unitaries have emerged as a rich playground for the exploration of many-body quantum dynamics of discrete-time systems. While the intrinsic locality mak…

quant-ph2024★ 2 cited

Simulating the Fermi-Hubbard model with long-range hopping on a quantum computer

Tatiana A. Bespalova, Karlo Delić, Guido Pupillo +2

We investigate the performance and accuracy of digital quantum algorithms for the study of static and dynamic properties of the fermionic Hubbard model at half-filling with next-ne…

cond-mat.str-el2024★ 1 cited

Dynamical Mean Field Theory for Real Materials on a Quantum Computer

Johannes Selisko, Maximilian Amsler, Christopher Wever +6

Quantum computers (QC) could harbor the potential to significantly advance materials simulations, particularly at the atomistic scale involving strongly correlated fermionic system…

quant-ph2024★ 10 cited

Hybrid Tree Tensor Networks for quantum simulation

Julian Schuhmacher, Marco Ballarin, Alberto Baiardi +4

Hybrid Tensor Networks (hTN) offer a promising solution for encoding variational quantum states beyond the capabilities of efficient classical methods or noisy quantum computers al…

cs.LG2024

Quantum Theory and Application of Contextual Optimal Transport

Nicola Mariella, Albert Akhriev, Francesco Tacchino +9

Optimal Transport (OT) has fueled machine learning (ML) across many domains. When paired data measurements are coupled to covariates, a challenging c…

quant-ph2024★ 18 cited

Dual frame optimization for informationally complete quantum measurements

Laurin E. Fischer, Timothée Dao, Ivano Tavernelli +1

Randomized measurement protocols such as classical shadows represent powerful resources for quantum technologies, with applications ranging from quantum state characterization and…