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quant-ph2026

Sympathetic Cooling in Trapped Ions with Spectral Selectivity via the Zeeman Shift

Kavyashree Ranawat, Jiyong Yu, Andrew Van Horn +3

High-fidelity quantum logic operations in trapped ions often require the ions' collective motion to be cooled to near the ground state. Since cooling the ions' motion typically inv…

quant-ph2026

Design and Characterization of Compact Acousto-Optic-Deflector Individual Addressing System for Trapped-Ion Quantum Computing

Jiyong Yu, Kavyashree Ranawat, Andrew Van Horn +4

We present a compact design for a beam-steering system based on acousto-optic-deflectors (AODs) used as an individual addressing system for trapped-ion quantum computing. The desig…

quant-ph2024

Seeking a quantum advantage with trapped-ion quantum simulations of condensed-phase chemical dynamics

Mingyu Kang, Hanggai Nuomin, Sutirtha N. Chowdhury +8

Simulating the quantum dynamics of molecules in the condensed phase represents a longstanding challenge in chemistry. Trapped-ion quantum systems may serve as a platform for the an…

quant-ph2024

Graph-Based Pulse Representation for Diverse Quantum Control Hardware

Aniket S. Dalvi, Leon Riesebos, Jacob Whitlow +1

Pulse-level control of quantum systems is critical for enabling gate implementations, calibration procedures, and Hamiltonian evolution which fundamentally are not supported by the…

quant-ph2024

One-Time Compilation of Device-Level Instructions for Quantum Subroutines

Aniket S. Dalvi, Jacob Whitlow, Marissa D'Onofrio +5

A large class of problems in the current era of quantum devices involve interfacing between the quantum and classical system. These include calibration procedures, characterization…