• Cite Icon23
  • https://doi.org/10.1007/jhep11(2022)035Copy DOI Icon

Collider events on a quantum computer

Show More
  • Abstract
  • PDF
  • Literature Map
  • References
  • Citations
  • Similar Papers
Abstract

High-quality simulated data is crucial for particle physics discoveries. Therefore, parton shower algorithms are a major building block of the data synthesis in event generator programs. However, the core algorithms used to generate parton showers have barely changed since the 1980s. With quantum computers’ rapid and continuous development, dedicated algorithms are required to exploit the potential that quantum computers provide to address problems in high-energy physics. This paper presents a novel approach to synthesising parton showers using the Discrete QCD method. The algorithm benefits from an elegant quantum walk implementation which can be embedded into the classical toolchain. We use the ibm_algiers device to sample parton shower configurations and generate data that we compare against measurements taken at the ALEPH, DELPHI and OPAL experiments. This is the first time a Noisy Intermediate-Scale Quantum (NISQ) device has been used to simulate realistic high-energy particle collision events.

Loading PDF

Similar Papers
  • Conference Article
  • Citations5

Machine Learning for Quantum Hardware Performance Assessment

  • Oct 01, 2022
  • Vedika Saravanan +1
  • Research Article
  • Citations9

Domain-specific compilers for dynamic simulations of quantum materials on quantum computers

  • Dec 23, 2020
  • Quantum Science & Technology
  • Lindsay Bassman Oftelie +9
  • Conference Article
  • Citations40

SQUARE: Strategic Quantum Ancilla Reuse for Modular Quantum Programs via Cost-Effective Uncomputation

  • May 01, 2020
  • Yongshan Ding +6
  • Preprint Article

MPS-VQE: A variational quantum computational chemistry simulator with matrix product states

  • Jul 01, 2024
  • Honghui Shang
  • Conference Article
  • Citations4

Real-time Quantum Calculations of Phase Shifts On NISQ Hardware Platforms Using Wavepacket Time Delay

  • May 16, 2022
  • Patrick Dreher +4
  • Research Article
  • Citations13

Quantum Neural Network Inspired Hardware Adaptable Ansatz for Efficient Quantum Simulation of Chemical Systems.

  • Dec 04, 2023
  • Journal of Chemical Theory and Computation
  • Xiongzhi Zeng +4
  • Conference Article
  • Citations9

Test Data-Driven Machine Learning Models for Reliable Quantum Circuit Output

  • May 24, 2021
  • Vedika Saravanan +1
  • Research Article
  • Citations23

Preparing valence-bond-solid states on noisy intermediate-scale quantum computers

  • Mar 20, 2023
  • Physical Review Research
  • Bruno Murta +2
  • Research Article
  • Citations90

Quantum computing for near-term applications in generative chemistry and drug discovery

  • Jun 16, 2023
  • Drug Discovery Today
  • Alexey Pyrkov +7
  • PDF
  • Book Chapter
  • Citations1

Mechanizing Quantum Error Correction Through Entangled Quantum Machine Learning Techniques

  • Dec 05, 2023
  • Theresa Melvin
  • Research Article
  • Citations22

Variational Quantum Simulation of Chemical Dynamics with Quantum Computers.

  • Mar 16, 2022
  • Journal of Chemical Theory and Computation
  • Chee-Kong Lee +3
  • PDF
  • Research Article
  • Citations52

Parton-shower uncertainties with Herwig 7: benchmarks at leading order

  • Dec 01, 2016
  • The European Physical Journal C
  • Johannes Bellm +4
  • Conference Article
  • Citations19

Analyzing the behaviour of D'WAVE quantum annealer: fine-tuning parameterization and tests with restrictive Hamiltonian formulations

  • Dec 04, 2022
  • Esther Villar-Rodriguez +2
  • Conference Article
  • Citations3

Model-Independent Error Mitigation in Parametric Quantum Circuits and Depolarizing Projection of Quantum Noise

  • May 16, 2022
  • Xiaoyang Wang +7
  • Conference Article
  • Citations4

Variational Parameter Optimization of Quantum-classical Hybrid Heuristics on Near-term Quantum Computer

  • Aug 08, 2022
  • Tsukasa Miki +4
Cactus Communications logo

Copyright 2026 Cactus Communications. All rights reserved.