BibTex format
@article{Ma:2025,
author = {Ma, Y and Hanks, M and Gneusheva, E and Kim, MS},
journal = {Physical Review Research},
title = {Reshaping quantum device noise via repetition code circuits},
year = {2025}
}
In this section
@article{Ma:2025,
author = {Ma, Y and Hanks, M and Gneusheva, E and Kim, MS},
journal = {Physical Review Research},
title = {Reshaping quantum device noise via repetition code circuits},
year = {2025}
}
TY - JOUR
AB - Noise of a quantum processor can be an important resource for simulating open quantum dynamics. However, this requires characterizing the device noise and then transforming it into a target structure. Here we take the first step towards this goal: We analytically and numerically study re-shaping the noise associated with native trapped-ion two-qubit entangling gates via quantum circuits based on repetition codes, and demonstrate our findings on the IonQ Aria-1 quantum hardware. We investigate all the building blocks, including the quantum channels describing noisy two-qubit entangling gates, the compilation of the encoding circuits into native gates, and the propagation of two-qubit errors across ideal single-qubit gates
AU - Ma,Y
AU - Hanks,M
AU - Gneusheva,E
AU - Kim,MS
PY - 2025///
SN - 2643-1564
TI - Reshaping quantum device noise via repetition code circuits
T2 - Physical Review Research
ER -