芯片上的非易挥发性可重新配置的相变拓光子学
Shoujun Zhang1,2,3, Wenhao Wang2,3, Zhonglei Shen2,3
1Center for Terahertz Waves and College of Precision Instrument and Optoelectronics Engineering, State Key Laboratory of Precision Measurement Technology and Instruments, Tianjin University, Tianjin, 300072, China.
Advanced materials (Deerfield Beach, Fla.)
|March 12, 2025
概括
这项研究引入了使用相变材料的非挥发性,可编程的太赫兹 (THz) 拓芯片. 这一创新使可重新配置的光子设备在没有持续的能量输入的情况下实现了持续的,节能的设备功能.
科学领域:
- 光子学 是一个光子学.
- 材料科学 材料科学 材料科学
- 凝聚物质物理学 凝聚物质物理学
背景情况:
- 特拉赫兹 (THz) 拓光子设备为数据系统提供了高容量和可重配置性.
- 目前的THz设备由于挥发性的调机制,需要连续供电.
研究的目的:
- 为了展示一种非易失性,可编程的THz拓芯片.
- 在没有恒定输入功率的情况下实现持久和高效的功能.
主要方法:
- 一个波导-腔合系统与相变材料Ge2Sb2Te5 (GST) 的集成.
- 调整GST中间阶段状态 (无形到晶体) 以实现非挥发性重新配置.
- 可光调,可挥发性调制,用于对空腔合状态进行可控重置.
主要成果:
- 在不同的合状态中实现了拓腔的稳定,非挥发性重新配置.
- 证明了共振传输的多级调制,调制深度为70dB.
- 实现了对共振模式的精确控制和关键合的动态调.
结论:
- 演示了第一个非挥发性,可编程的THz拓集成芯片.
- 这一进步为将相变材料集成到拓芯片中铺平了道路.
- 允许灵活控制共振模式,用于诸如互连,调制器和逻辑电路等应用.
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