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quant-ph2025

Toward hybrid quantum simulations with qubits and qumodes on trapped-ion platforms

Jack Y. Araz, Matt Grau, Jake Montgomery +1

We explore the feasibility of gate-based hybrid quantum computing using both discrete (qubit) and continuous (qumode) variables on trapped-ion platforms. Trapped-ion systems have d…

quant-ph2025

State preparation of lattice field theories using quantum optimal control

Jack Y. Araz, Siddhanth Bhowmick, Matt Grau +2

We explore the application of quantum optimal control (QOC) techniques to state preparation of lattice field theories on quantum computers. As a first example, we focus on the Schw…

quant-ph2024

Thermal state preparation of the SYK model using a variational quantum algorithm

Jack Y. Araz, Raghav G. Jha, Felix Ringer +1

We study the preparation of thermal states of the dense and sparse Sachdev-Ye-Kitaev (SYK) model using a variational quantum algorithm for Majorana fermions over a…

quant-ph2024

The role of data embedding in quantum autoencoders for improved anomaly detection

Jack Y. Araz, Michael Spannowsky

The performance of Quantum Autoencoders (QAEs) in anomaly detection tasks is critically dependent on the choice of data embedding and ansatz design. This study explores the effects…

quant-ph2024

Exploring thermal equilibria of the Fermi-Hubbard model with variational quantum algorithms

Jack Y. Araz, Michael Spannowsky, Matthew Wingate

This study investigates the thermal properties of the repulsive Fermi-Hubbard model with chemical potential using variational quantum algorithms, crucial in comprehending particle…