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20242026
most citedQuantum simulating continuum field theories with large-spin lattice models

4 citations · 7 across the 9 of their papers we have counts for

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quant-ph2026

Programmable Fermionic Quantum Processors with Globally Controlled Lattices

Gabriele Calliari, Charles Fromonteil, Francesco Cesa +4

We introduce a framework for realizing universal fermionic quantum processing with globally controlled itinerant fermionic particles. Our approach is tailored to the example of neu…

quant-ph2026

Imaginary time evolution and ground state preparation using unitary multi-copy protocols

Tal Schwartzman, Torsten V. Zache, Hannes Pichler +1

Efficient low-energy state preparation is a key objective in quantum computation and quantum simulation. Quantum imaginary-time evolution replaces real-time dynamics with imaginary…

quant-ph2026

U(1) lattice gauge theory and string roughening on a triangular Rydberg array

Lisa Bombieri, Torsten V. Zache, Hannes Pichler +1

Lattice gauge theories (LGTs) describe fundamental interactions in particle physics. A central phenomenon in these theories is confinement, which binds quarks and antiquarks into h…

quant-ph2026

Rare-Event Quantum Sensing using Logical Qubits

Robert Ott, Torsten V. Zache, Soonwon Choi +2

We present a novel protocol to detect rare signals in a noisy environment using quantum error correction (QEC). The key feature of our protocol is the discrimination between signal…

quant-ph2025

Non-local mass superpositions and optical clock interferometry in atomic ensemble quantum networks

Charles Fromonteil, Denis V. Vasilyev, Torsten V. Zache +5

Quantum networks are emerging as powerful platforms for sensing, communication, and fundamental tests of physics. We propose a programmable quantum sensing network based on entangl…

quant-ph2025★ 1 cited

Deconfined quantum criticality on a triangular Rydberg array

Lisa Bombieri, Torsten V. Zache, Gabriele Calliari +3

Fluctuations can drive continuous phase transitions between two distinct ordered phases -- so-called deconfined quantum critical points (DQCPs) -- which lie beyond the Landau-Ginzb…