波导壁粗度对量子信号传输的影响
E Azough1, H Ahmadi1, A Rostami2,3
1Photonics and Nanocrystal Research Lab. (PNRL), University of Tabriz, Tabriz, 5166614761, Iran.
Scientific reports
|December 12, 2025
概括
量子光学设备中的随机波导不完美会导致脱凝,扭曲量子状态. 这项研究确定了像InP/InGaAsP这样的合适材料,并强调了在量子处理的在绝缘体平台上精确制造的需要.
科学领域:
- 量子计算是一种量子计算.
- 集成的量子光学.
- 材料科学是一种材料科学.
背景情况:
- 量子计算机提供了显著的优势,推动了对紧量子系统的研究.
- 集成量子光学处理器对开发量子设备具有前景.
- 量子比特过程中的不一致性挑战了量子状态的稳定性.
研究的目的:
- 为了识别量子光学设备中的脱相源.
- 评估半导体材料和量子波导的制造技术.
- 为了确定量子处理设备的最佳量子级平台.
主要方法:
- 研究了随机波导壁缺陷对脱凝度的影响.
- 在不同半导体材料 (InP/InGaAsP,SiON,Si3N4,二氧化,SOI) 中比较脱凝性质.
- 分析了在绝缘体平台的量子交叉声长度.
主要成果:
- 随机波导不完美是量子光学设备中脱凝的主要来源.
- InP/InGaAsP,SiON,Si3N4和二氧化是量子波导的合适材料.
- 在绝缘体上的平台表现出短的量子交叉声长度,需要精确的制造.
结论:
- 精确的制造方法对于在绝缘体平台上的波导至关重要.
- 材料选择和制造精度是减轻量子光学设备中脱的关键.
- 这项工作为选择适合量子处理的量子级平台提供了指导.
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