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20132026
most citedQuantum Many-Body Scars: A Quasiparticle Perspective

245 citations · 1.1k across the 52 of their papers we have counts for

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Showing 2024Show all

12 papers · 1 filter

quant-ph2024★ 1 cited

dimensional Floquet systems and lattice fermions: Exact bulk spectral equivalence

Thomas Iadecola, Srimoyee Sen, Lars Sivertsen

A connection has recently been proposed between periodically driven systems known as Floquet insulators in continuous time and static fermion theories in discrete time. This connec…

quant-ph2024★ 3 cited

Concomitant Entanglement and Control Criticality Driven by Collective Measurements

Thomas Iadecola, Justin H. Wilson, J. H. Pixley

Adaptive quantum circuits-where a quantum many-body state is controlled using measurements and conditional unitary operations-are a powerful paradigm for state preparation and quan…

quant-ph2024★ 6 cited

Adaptive variational quantum dynamics simulations with compressed circuits and fewer measurements

Feng Zhang, Cai-Zhuang Wang, Thomas Iadecola +2

The adaptive variational quantum dynamics simulation (AVQDS) method performs real-time evolution of quantum states using automatically generated parameterized quantum circuits that…

quant-ph2024★ 3 cited

Classical Benchmarks for Variational Quantum Eigensolver Simulations of the Hubbard Model

Antonios M. Alvertis, Abid Khan, Thomas Iadecola +2

Simulating the Hubbard model is of great interest to a wide range of applications within condensed matter physics, however its solution on classical computers remains challenging i…

quant-ph2024

Minimally Entangled Typical Thermal States for Classical and Quantum Simulation of 1+1-Dimensional Lattice Gauge Theory at Finite Temperature and Density

I-Chi Chen, João C. Getelina, Klée Pollock +4

Simulating strongly coupled gauge theories at finite temperature and density is a longstanding challenge in nuclear and high-energy physics that also has fundamental implications f…

quant-ph2024★ 5 cited

Adaptive variational quantum computing approaches for Green's functions and nonlinear susceptibilities

Martin Mootz, Thomas Iadecola, Yong-Xin Yao

We present and benchmark quantum computing approaches for calculating real-time single-particle Green's functions and nonlinear susceptibilities of Hamiltonian systems. The approac…