Noncommutative metasurfaces enabled diverse quantum path entanglement of structured photons

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Wang, Yan, Shou, Yichang, Liu, Jiawei, Yang, Qiang, Chen, Shizhen, Shu, Weixing, Wen, Shuangchun, Luo, Hailu
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866929717798502400
author Wang, Yan
Shou, Yichang
Liu, Jiawei
Yang, Qiang
Chen, Shizhen
Shu, Weixing
Wen, Shuangchun
Luo, Hailu
author_facet Wang, Yan
Shou, Yichang
Liu, Jiawei
Yang, Qiang
Chen, Shizhen
Shu, Weixing
Wen, Shuangchun
Luo, Hailu
contents Quantum entanglement, a fundamental concept in quantum mechanics, lies at the heart of many current and future quantum technologies. A pivotal task is generation and control of diverse quantum entangled states in a more compact and flexible manner. Here, we introduce an approach to achieve diverse path entanglement by exploiting the interaction between noncommutative metasurfaces and entangled photons. Different from other path entanglement, our quantum path entanglement is evolvement path entanglement of photons on Poincaré sphere. Due to quantum entanglement between idler photons and structured signal photons, evolvement path of idler photons on the fundamental Poincaré sphere can be nonlocally mirrored by structured signal photons on any high-order Poincaré sphere, resulting in quantum path entanglement. Benefiting from noncommutative metasurfaces, diverse quantum path entanglement can be switched across different higher-order Poincaré spheres using distinct combination sequences of metasurfaces. Our method allows for the tuning of diverse quantum path entanglement across a broad spectrum of quantum states, offering a significant advancement in the manipulation of quantum entanglement.
format Preprint
id arxiv_https___arxiv_org_abs_2502_10963
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Noncommutative metasurfaces enabled diverse quantum path entanglement of structured photons
Wang, Yan
Shou, Yichang
Liu, Jiawei
Yang, Qiang
Chen, Shizhen
Shu, Weixing
Wen, Shuangchun
Luo, Hailu
Optics
Quantum Physics
Quantum entanglement, a fundamental concept in quantum mechanics, lies at the heart of many current and future quantum technologies. A pivotal task is generation and control of diverse quantum entangled states in a more compact and flexible manner. Here, we introduce an approach to achieve diverse path entanglement by exploiting the interaction between noncommutative metasurfaces and entangled photons. Different from other path entanglement, our quantum path entanglement is evolvement path entanglement of photons on Poincaré sphere. Due to quantum entanglement between idler photons and structured signal photons, evolvement path of idler photons on the fundamental Poincaré sphere can be nonlocally mirrored by structured signal photons on any high-order Poincaré sphere, resulting in quantum path entanglement. Benefiting from noncommutative metasurfaces, diverse quantum path entanglement can be switched across different higher-order Poincaré spheres using distinct combination sequences of metasurfaces. Our method allows for the tuning of diverse quantum path entanglement across a broad spectrum of quantum states, offering a significant advancement in the manipulation of quantum entanglement.
title Noncommutative metasurfaces enabled diverse quantum path entanglement of structured photons
topic Optics
Quantum Physics
url https://arxiv.org/abs/2502.10963