Pith. sign in

REVIEW 12 cited by

Visualizing Dynamics of Charges and Strings in (2+1)D Lattice Gauge Theories

Not yet reviewed by Pith; the record is open.

This paper has not been read by Pith yet. Machine review is queued; the pith claim, tier, and objections will appear here once it completes.

SPECIMEN: schema-true, not a live event

T0 review · schema-true

One-sentence machine reading of the paper's core claim.

pith:XXXXXXXX · record.json · timestamp

arxiv 2409.17142 v2 pith:DLVDMRDB submitted 2024-09-25 quant-ph cond-mat.str-elhep-lat

Visualizing Dynamics of Charges and Strings in (2+1)D Lattice Gauge Theories

Tyler A. Cochran , Bernhard Jobst , Eliott Rosenberg , Yuri D. Lensky , Gaurav Gyawali , Norhan Eassa , Melissa Will , Dmitry Abanin
show 184 more authors
Rajeev Acharya Laleh Aghababaie Beni Trond I. Andersen Markus Ansmann Frank Arute Kunal Arya Abraham Asfaw Juan Atalaya Ryan Babbush Brian Ballard Joseph C. Bardin Andreas Bengtsson Alexander Bilmes Alexandre Bourassa Jenna Bovaird Michael Broughton David A. Browne Brett Buchea Bob B. Buckley Tim Burger Brian Burkett Nicholas Bushnell Anthony Cabrera Juan Campero Hung-Shen Chang Zijun Chen Ben Chiaro Jahan Claes Agnetta Y. Cleland Josh Cogan Roberto Collins Paul Conner William Courtney Alexander L. Crook Ben Curtin Sayan Das Sean Demura Laura De Lorenzo Agustin Di Paolo Paul Donohoe Ilya Drozdov Andrew Dunsworth Alec Eickbusch Aviv Moshe Elbag Mahmoud Elzouka Catherine Erickson Vinicius S. Ferreira Leslie Flores Burgos Ebrahim Forati Austin G. Fowler Brooks Foxen Suhas Ganjam Robert Gasca \'Elie Genois William Giang Dar Gilboa Raja Gosula Alejandro Grajales Dau Dietrich Graumann Alex Greene Jonathan A. Gross Steve Habegger Monica Hansen Matthew P. Harrigan Sean D. Harrington Paula Heu Oscar Higgott Jeremy Hilton Hsin-Yuan Huang Ashley Huff William J. Huggins Evan Jeffrey Zhang Jiang Cody Jones Chaitali Joshi Pavol Juhas Dvir Kafri Hui Kang Amir H. Karamlou Kostyantyn Kechedzhi Trupti Khaire Tanuj Khattar Mostafa Khezri Seon Kim Paul V. Klimov Bryce Kobrin Alexander N. Korotkov Fedor Kostritsa John Mark Kreikebaum Vladislav D. Kurilovich David Landhuis Tiano Lange-Dei Brandon W. Langley Kim-Ming Lau Justin Ledford Kenny Lee Brian J. Lester Lo\"ick Le Guevel Wing Yan Li Alexander T. Lill William P. Livingston Aditya Locharla Daniel Lundahl Aaron Lunt Sid Madhuk Ashley Maloney Salvatore Mandr\`a Leigh S. Martin Orion Martin Cameron Maxfield Jarrod R. McClean Matt McEwen Seneca Meeks Anthony Megrant Kevin C. Miao Reza Molavi Sebastian Molina Shirin Montazeri Ramis Movassagh Charles Neill Michael Newman Anthony Nguyen Murray Nguyen Chia-Hung Ni Murphy Yuezhen Niu William D. Oliver Kristoffer Ottosson Alex Pizzuto Rebecca Potter Orion Pritchard Chris Quintana Ganesh Ramachandran Matthew J. Reagor David M. Rhodes Gabrielle Roberts Kannan Sankaragomathi Kevin J. Satzinger Henry F. Schurkus Michael J. Shearn Aaron Shorter Noah Shutty Vladimir Shvarts Volodymyr Sivak Spencer Small W. Clarke Smith Sofia Springer George Sterling Jordan Suchard Aaron Szasz Alex Sztein Douglas Thor M. Mert Torunbalci Abeer Vaishnav Justin Vargas Sergey Vdovichev Guifre Vidal Catherine Vollgraff Heidweiller Steven Waltman Shannon X. Wang Brayden Ware Theodore White Kristi Wong Bryan W. K. Woo Cheng Xing Z. Jamie Yao Ping Yeh Bicheng Ying Juhwan Yoo Noureldin Yosri Grayson Young Adam Zalcman Yaxing Zhang Ningfeng Zhu Nicholas Zobris Sergio Boixo Julian Kelly Erik Lucero Yu Chen Vadim Smelyanskiy Hartmut Neven Adam Gammon-Smith Frank Pollmann Michael Knap Pedram Roushan
This is my paper
classification quant-ph cond-mat.str-elhep-lat
keywords dynamicsstringexcitationslatticeconfinedconfinementdynamicalelectric
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
0 comments
read the original abstract

Lattice gauge theories (LGTs) can be employed to understand a wide range of phenomena, from elementary particle scattering in high-energy physics to effective descriptions of many-body interactions in materials. Studying dynamical properties of emergent phases can be challenging as it requires solving many-body problems that are generally beyond perturbative limits. Here, we investigate the dynamics of local excitations in a $\mathbb{Z}_2$ LGT using a two-dimensional lattice of superconducting qubits. We first construct a simple variational circuit which prepares low-energy states that have a large overlap with the ground state; then we create charge excitations with local gates and simulate their quantum dynamics via a discretized time evolution. As the electric field coupling constant is increased, our measurements show signatures of transitioning from deconfined to confined dynamics. For confined excitations, the electric field induces a tension in the string connecting them. Our method allows us to experimentally image string dynamics in a (2+1)D LGT from which we uncover two distinct regimes inside the confining phase: for weak confinement the string fluctuates strongly in the transverse direction, while for strong confinement transverse fluctuations are effectively frozen. In addition, we demonstrate a resonance condition at which dynamical string breaking is facilitated. Our LGT implementation on a quantum processor presents a novel set of techniques for investigating emergent excitations and string dynamics.

discussion (0)

Sign in with ORCID, Apple, or X to comment. Anyone can read and Pith papers without signing in.

Forward citations

Cited by 12 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Meson spectroscopy of exotic symmetries of Ising criticality in Rydberg atom arrays

    quant-ph 2025-06 unverdicted novelty 7.0

    Rydberg arrays realize Ising criticality with E8 mass spectra in chains and first signatures of D8^(1)-organized bound states from interchain confinement in ladders.

  2. Disorder-Free Localization and Fragmentation in a Non-Abelian Lattice Gauge Theory

    cond-mat.quant-gas 2025-05 unverdicted novelty 7.0

    A (1+1)D SU(2) lattice gauge theory with dynamical matter exhibits ergodic, fragmented, and disorder-free many-body localized phases under non-Abelian gauge constraints, with the localized regime preserving spatial in...

  3. $p$-Form Gauge Dynamics and Digital Quantum Simulation -- Flux and Cosmological Constant Neutralization

    quant-ph 2026-07 conditional novelty 6.0

    Exact diagonalization of a Gauss-law-reduced Z2 two-form plaquette model finds cap flux discharge of 20–37% and a tension-to-density dynamical crossover near (m/ε_E)_c ≃ 1.89, with a digital circuit encoding.

  4. Photonic Analog Quantum Simulation of (1+1)-Dimensional $U(1)$ Lattice Gauge Theory with Dynamical Matter

    hep-lat 2026-06 unverdicted novelty 6.0

    A mapping of the Jaynes-Cummings-Hubbard model onto the spin-1/2 Quantum Link Model via tuned polaritonic resonances in cavity arrays enables analog simulation of U(1) LGT dynamics with matter, verified by exact diago...

  5. Nonlocal Nonstabilizerness from Holographic Schwinger Pair Production

    hep-th 2026-05 unverdicted novelty 6.0

    Holographic Schwinger pair creation generates nonlocal magic for spacetime dimensions d>2, as shown by a non-flat entanglement spectrum that can be read from the probe brane free energy.

  6. Ground state preparation in $(2+1)$-dimensional pure $\mathbb{Z}_2$ lattice gauge theory via deterministic quantum imaginary time evolution

    hep-lat 2026-04 conditional novelty 6.0

    Deterministic QITE with a Gauss-law-reduced Pauli pool reproduces DMRG ground-state energies of (2+1)-D pure Z2 lattice gauge theory to within 0.1% for ladders of up to 32 qubits and coupling λ ∈ [0.5, 5].

  7. Ground state preparation in $(2+1)$-dimensional pure $\mathbb{Z}_2$ lattice gauge theory via deterministic quantum imaginary time evolution

    hep-lat 2026-04 unverdicted novelty 6.0

    Deterministic QITE made gauge-invariant via commuting Pauli operators achieves relative error below 0.1 percent for ground-state preparation in 2+1D Z2 LGT on systems up to twelve plaquettes, as shown by tensor-networ...

  8. The Quantum Complexity of String Breaking in the Schwinger Model

    hep-ph 2026-01 unverdicted novelty 6.0

    Quantum complexity measures applied to the Schwinger model reveal nonlocal correlations along the string and show that entanglement and magic give complementary views of string formation and breaking.

  9. Projected Entangled Pair States for Lattice Gauge Theories with Dynamical Fermions

    hep-lat 2024-12 unverdicted novelty 6.0

    Gauged Gaussian PEPS ansatz demonstrated on Z2 gauge theory with dynamical fermions, agreeing with exact diagonalization on small lattices and feasible for larger ones.

  10. Nonlocal Nonstabilizerness from Holographic Schwinger Pair Production

    hep-th 2026-05 conditional novelty 5.0

    In holographic Schwinger pair production, the excess capacity of entanglement is √λ(d−2)/(d−1)³ — positive for d>2, zero for d=2 — so the produced pair carries nonlocal magic for d>2.

  11. Observation of Robust and Coherent Non-Abelian Hadron Dynamics on Noisy Quantum Processors

    hep-lat 2026-02 reject novelty 5.0

    A 60-site SU(2) lattice gauge theory was run on 120 qubits, but the implemented dynamics approximate to non-interacting fermion hopping, and the abstract's claimed breathing-mode frequency is not extracted anywhere.

  12. Quantum Simulation of Gauge Theories for Particle and Nuclear Physics

    hep-lat 2026-05 unverdicted novelty 3.0

    The talk summarizes the quantum simulation program for lattice gauge theories, covering target problems in dense matter, algorithmic strategies, recent progress, and remaining challenges.