Tailoring Synthetic Gauge Fields in Ultracold Atoms via Spatially Engineered Vector Beams

Fuente: arXiv
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Main Authors: Wang, Huan, Zhu, Shangguo, Long, Yun, Pu, Mingbo, Luo, Xiangang
Format: Preprint
Published: 2025
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author Wang, Huan
Zhu, Shangguo
Long, Yun
Pu, Mingbo
Luo, Xiangang
author_facet Wang, Huan
Zhu, Shangguo
Long, Yun
Pu, Mingbo
Luo, Xiangang
contents Ultracold atoms, typically manipulated by scalar beams with uniform polarization, have propelled advances in quantum simulation, computation, and metrology. Yet, vector beams (VBs) -- structured light with spatially varying polarization -- remain unexplored in this context, despite their enhanced tunability and broad optical applications. Here, we demonstrate a novel scheme to generate synthetic gauge fields in ultracold atoms via VB-mediated coupling of internal states. This approach enables angular stripe phases across an expanded parameter range, achieving a three-order-of-magnitude enhancement in the phase diagram and facilitating experimental observation. We further present an all-optical method to create topologically nontrivial giant skyrmions in spin space, with tunable topology governed by VB parameters. Our findings establish VBs as powerful tools for quantum control and the exploration of exotic quantum states and phases.
format Preprint
id arxiv_https___arxiv_org_abs_2501_15479
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Tailoring Synthetic Gauge Fields in Ultracold Atoms via Spatially Engineered Vector Beams
Wang, Huan
Zhu, Shangguo
Long, Yun
Pu, Mingbo
Luo, Xiangang
Quantum Gases
Atomic Physics
Optics
Quantum Physics
Ultracold atoms, typically manipulated by scalar beams with uniform polarization, have propelled advances in quantum simulation, computation, and metrology. Yet, vector beams (VBs) -- structured light with spatially varying polarization -- remain unexplored in this context, despite their enhanced tunability and broad optical applications. Here, we demonstrate a novel scheme to generate synthetic gauge fields in ultracold atoms via VB-mediated coupling of internal states. This approach enables angular stripe phases across an expanded parameter range, achieving a three-order-of-magnitude enhancement in the phase diagram and facilitating experimental observation. We further present an all-optical method to create topologically nontrivial giant skyrmions in spin space, with tunable topology governed by VB parameters. Our findings establish VBs as powerful tools for quantum control and the exploration of exotic quantum states and phases.
title Tailoring Synthetic Gauge Fields in Ultracold Atoms via Spatially Engineered Vector Beams
topic Quantum Gases
Atomic Physics
Optics
Quantum Physics
url https://arxiv.org/abs/2501.15479