Phase gadget compilation of quantum circuits using multiqubit gates

Fuente: arXiv
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Main Authors: Nemirovsky, Jonathan, Chuchem, Maya, Peleg, Lee, Solomons, Yakov, Kish, Amit Ben, Shapira, Yotam
Format: Preprint
Published: 2025
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author Nemirovsky, Jonathan
Chuchem, Maya
Peleg, Lee
Solomons, Yakov
Kish, Amit Ben
Shapira, Yotam
author_facet Nemirovsky, Jonathan
Chuchem, Maya
Peleg, Lee
Solomons, Yakov
Kish, Amit Ben
Shapira, Yotam
contents Quantum circuit synthesis and compilation are critical components in the quantum computing stack, both for contemporary quantum systems, where efficient use of limited resources is essential, as well as for large-scale fault-tolerant platforms, where computation time can be minimized. The specific characteristics of the quantum hardware determine which circuit designs and optimizations are feasible. We present a phase-gadget based method for compilation of quantum circuits using programmable multiqubit entangling gates, that are native, among others, to trapped-ions quantum computers. We use phase-gadgets in order to generically reduce circuit depths and efficiently implement them with few, high-fidelity, multiqubit gates. We test our methods on a large set of benchmark circuits and demonstrate generic circuit depth reduction and implementation error reduction.
format Preprint
id arxiv_https___arxiv_org_abs_2510_16788
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Phase gadget compilation of quantum circuits using multiqubit gates
Nemirovsky, Jonathan
Chuchem, Maya
Peleg, Lee
Solomons, Yakov
Kish, Amit Ben
Shapira, Yotam
Quantum Physics
Quantum circuit synthesis and compilation are critical components in the quantum computing stack, both for contemporary quantum systems, where efficient use of limited resources is essential, as well as for large-scale fault-tolerant platforms, where computation time can be minimized. The specific characteristics of the quantum hardware determine which circuit designs and optimizations are feasible. We present a phase-gadget based method for compilation of quantum circuits using programmable multiqubit entangling gates, that are native, among others, to trapped-ions quantum computers. We use phase-gadgets in order to generically reduce circuit depths and efficiently implement them with few, high-fidelity, multiqubit gates. We test our methods on a large set of benchmark circuits and demonstrate generic circuit depth reduction and implementation error reduction.
title Phase gadget compilation of quantum circuits using multiqubit gates
topic Quantum Physics
url https://arxiv.org/abs/2510.16788