most citedAdiabatic echo protocols for robust quantum many-body state preparation

2 citations · 2 across the 2 of their papers we have counts for

collaborators

8 papers

quant-ph20262 cited

Adiabatic echo protocols for robust quantum many-body state preparation

Zhongda Zeng, Giuliano Giudici, Aruku Senoo +3

Entangled many-body states are a key resource for quantum technologies. Yet their preparation through analog control of interacting quantum systems is often hindered by experimenta…

quant-ph2026

Quantum Cellular Automata on a Dual-Species Rydberg Processor

Ryan White, Vikram Ramesh, Alexander Impertro +6

As quantum devices scale to larger and larger sizes, a significant challenge emerges in scaling their coherent controls accordingly. Quantum cellular automata (QCAs) constitute a p…

quant-ph2026

Engineering discrete local dynamics in globally driven dual-species atom arrays

Francesco Cesa, Andrea Di Fini, David Aram Korbany +4

We introduce a method for engineering discrete local dynamics in globally-driven dual-species neutral atom experiments, allowing us to study emergent digital models through uniform…

quant-ph2025

High-fidelity entanglement and coherent multi-qubit mapping in an atom array

Aruku Senoo, Alexander Baumgärtner, Joanna W. Lis +5

Neutral atoms in optical tweezer arrays possess broad applicability for quantum information science, in computing, simulation, and metrology. Among atomic species, Ytterbium-171 is…

quant-ph2025

Quantum control of continuous systems via nonharmonic potential modulation

Piotr T. Grochowski, Hannes Pichler, Cindy A. Regal +1

We present a theoretical proposal for preparing and manipulating a state of a single continuous-variable degree of freedom confined to a nonharmonic potential. By utilizing optimal…

quant-ph2025

Fast entangling gates for Rydberg atoms via resonant dipole-dipole interaction

Giuliano Giudici, Stefano Veroni, Giacomo Giudice +2

The advent of digital neutral-atom quantum computers relies on the development of fast and robust protocols for high-fidelity quantum operations. In this work, we introduce a novel…