Theoretical study of the Spectroscopic measurements of Kerr non-linear resonators with four-body interaction

Fuente: arXiv
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Main Authors: Matsuzaki, Yuichiro, Mori, Yuichiro, Yamaguchi, Aiko, Kawakami, Yohei, Yamamoto, Tsuyoshi
Format: Preprint
Published: 2025
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_version_ 1866910777977339904
author Matsuzaki, Yuichiro
Mori, Yuichiro
Yamaguchi, Aiko
Kawakami, Yohei
Yamamoto, Tsuyoshi
author_facet Matsuzaki, Yuichiro
Mori, Yuichiro
Yamaguchi, Aiko
Kawakami, Yohei
Yamamoto, Tsuyoshi
contents Quantum annealing provides a promising way to solve combinational optimization problems where the solutions correspond to the ground state of the Ising Hamiltonian. We can implement quantum annealing using the Kerr non-linear resonators, with bifurcation phenomena emerging when subjected to a parametric drive. These bifurcated states can function as bases of qubits. Moreover, integrating four-body interactions between physical qubits enables the establishment of effective all-to-all long-range interactions between logical qubits, which is essential for practical quantum annealing. While theoretical proposals exist for creating four-body interactions within Kerr non-linear resonators, there has not been experimental verification through their spectroscopic signatures. In this paper, we theoretically investigate the spectroscopic measurements of Kerr non-linear resonators featuring four-body interaction. We identify six distinct frequencies exhibiting population changes by employing resonant driving on one resonator and weak driving on another. Analytical and numerical calculations validate these findings. Our study demonstrates the potential of spectroscopy in characterizing systems with four-body interactions, offering insights for realizing quantum annealing with Kerr parametric oscillators.
format Preprint
id arxiv_https___arxiv_org_abs_2501_04981
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Theoretical study of the Spectroscopic measurements of Kerr non-linear resonators with four-body interaction
Matsuzaki, Yuichiro
Mori, Yuichiro
Yamaguchi, Aiko
Kawakami, Yohei
Yamamoto, Tsuyoshi
Quantum Physics
Quantum annealing provides a promising way to solve combinational optimization problems where the solutions correspond to the ground state of the Ising Hamiltonian. We can implement quantum annealing using the Kerr non-linear resonators, with bifurcation phenomena emerging when subjected to a parametric drive. These bifurcated states can function as bases of qubits. Moreover, integrating four-body interactions between physical qubits enables the establishment of effective all-to-all long-range interactions between logical qubits, which is essential for practical quantum annealing. While theoretical proposals exist for creating four-body interactions within Kerr non-linear resonators, there has not been experimental verification through their spectroscopic signatures. In this paper, we theoretically investigate the spectroscopic measurements of Kerr non-linear resonators featuring four-body interaction. We identify six distinct frequencies exhibiting population changes by employing resonant driving on one resonator and weak driving on another. Analytical and numerical calculations validate these findings. Our study demonstrates the potential of spectroscopy in characterizing systems with four-body interactions, offering insights for realizing quantum annealing with Kerr parametric oscillators.
title Theoretical study of the Spectroscopic measurements of Kerr non-linear resonators with four-body interaction
topic Quantum Physics
url https://arxiv.org/abs/2501.04981