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Updated: Apr 11, 2026

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Quasi-light Storage for Optical Data Packets
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在线光学中预告的Qudit Greenberger-Horne-Zeilinger状态的指数增强方案
Seungbeom Chin1, Junghee Ryu2, Yong-Su Kim3
1<a href="https://ror.org/02qg15b79">Okinawa Institute of Science and Technology Graduate University</a>, Okinawa 904-0495, Japan and Department of Electrical and Computer Engineering, <a href="https://ror.org/04q78tk20">Sungkyunkwan University</a>, Suwon 16419, Korea.
Physical review letters
|January 3, 2025
概括
研究人员开发了一种新的线性光学方案,以有效地创建高维多方纠,特别是格林伯格-霍恩-齐林格 (GHZ) 状态. 这种方法使用最小的光子,并为量子信息处理提供了更好的成功率.
科学领域:
- 量子信息科学 量子信息科学
- 量子光学是一种量子光学.
- 量子纠是一种量子纠.
背景情况:
- 高维的多方纠对于先进的量子信息科学至关重要.
- 目前用于生成高维纠的方法通常是复杂和昂贵的,特别是随着量子单位尺寸的增加.
研究的目的:
- 提出一个增强的线性光学预告方案,用于生成d级N-partite格林伯格-霍恩-齐林格 (GHZ) 状态.
- 克服现有的纠生成方案的复杂性和成本限制.
主要方法:
- 使用单光子源和线性光学操作.
- 采用线性光学逻辑门,与任何qudit编码系统兼容.
- 实施了一项宣传的计划,用于高效的状态生成.
主要成果:
- 通过使用最小所需的光子数 (dN) 成功生成了d级 N-partite GHZ状态.
- 与以前的计划相比,实现了大幅提高的成功概率.
- 证明了使用光束分割器生成通用GHZ状态的能力.
结论:
- 拟议的方案提供了一种高效和具有成本效益的方法,用于生成高维的多方纠.
- 这一进步有助于探索高维量子信息处理和相关应用.
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