Synthetic multi-dimensional Aharonov-Bohm cages in Fock state lattices

Fuente: arXiv
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Autori principali: Zhang, Jiajian, Huang, Wenhui, Chu, Ji, Qiu, Jiawei, Sun, Xuandong, Tao, Ziyu, Zhang, Jiawei, Zhang, Libo, Zhou, Yuxuan, Chen, Yuanzhen, Liu, Yang, Liu, Song, Zhong, Youpeng, Miao, Jian-Jian, Niu, Jingjing, Yu, Dapeng
Natura: Preprint
Pubblicazione: 2024
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author Zhang, Jiajian
Huang, Wenhui
Chu, Ji
Qiu, Jiawei
Sun, Xuandong
Tao, Ziyu
Zhang, Jiawei
Zhang, Libo
Zhou, Yuxuan
Chen, Yuanzhen
Liu, Yang
Liu, Song
Zhong, Youpeng
Miao, Jian-Jian
Niu, Jingjing
Yu, Dapeng
author_facet Zhang, Jiajian
Huang, Wenhui
Chu, Ji
Qiu, Jiawei
Sun, Xuandong
Tao, Ziyu
Zhang, Jiawei
Zhang, Libo
Zhou, Yuxuan
Chen, Yuanzhen
Liu, Yang
Liu, Song
Zhong, Youpeng
Miao, Jian-Jian
Niu, Jingjing
Yu, Dapeng
contents Fock-state lattices (FSLs), composed of photon number states with infinite Hilbert space, have emerged as a promising platform for simulating high-dimensional physics due to their potential to extend into arbitrarily high dimensions. Here, we demonstrate the construction of multi-dimensional FSLs using superconducting quantum circuits. By controlling artificial gauge fields within their internal structures, we investigate flux-induced extreme localization dynamics, such as Aharonov-Bohm caging, extending from 2D to 3D. We also explore the coherent interference of quantum superposition states, achieving extreme localization within specific subspaces assisted by quantum entanglement. Our findings pave the way for manipulating the behavior of a broad class of quantum states in higher-dimensional systems.
format Preprint
id arxiv_https___arxiv_org_abs_2412_09766
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Synthetic multi-dimensional Aharonov-Bohm cages in Fock state lattices
Zhang, Jiajian
Huang, Wenhui
Chu, Ji
Qiu, Jiawei
Sun, Xuandong
Tao, Ziyu
Zhang, Jiawei
Zhang, Libo
Zhou, Yuxuan
Chen, Yuanzhen
Liu, Yang
Liu, Song
Zhong, Youpeng
Miao, Jian-Jian
Niu, Jingjing
Yu, Dapeng
Quantum Physics
Fock-state lattices (FSLs), composed of photon number states with infinite Hilbert space, have emerged as a promising platform for simulating high-dimensional physics due to their potential to extend into arbitrarily high dimensions. Here, we demonstrate the construction of multi-dimensional FSLs using superconducting quantum circuits. By controlling artificial gauge fields within their internal structures, we investigate flux-induced extreme localization dynamics, such as Aharonov-Bohm caging, extending from 2D to 3D. We also explore the coherent interference of quantum superposition states, achieving extreme localization within specific subspaces assisted by quantum entanglement. Our findings pave the way for manipulating the behavior of a broad class of quantum states in higher-dimensional systems.
title Synthetic multi-dimensional Aharonov-Bohm cages in Fock state lattices
topic Quantum Physics
url https://arxiv.org/abs/2412.09766