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Cooling an Optically Trapped Ultracold Fermi Gas by Periodical Driving
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选择角度光子学用于智能下环境辐射冷却.

Fan Liu1, Qichong Zhang2

  • 1Key Laboratory of Multifunctional Nanomaterials and Smart Systems, Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences, Suzhou, 215123, People's Republic of China.

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|March 10, 2025
PubMed
概括

新的辐射冷却器通过管理热辐射的方向性来克服白天的冷却限制. 这项创新使垂直和倾斜的表面能够有效地冷却下环境,从而推进智能热系统.

关键词:
角不对称的角度不对称.辐射冷却是一种辐射冷却.垂直的表面垂直的表面

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科学领域:

  • 热力工程是热力工程中的一个.
  • 材料科学 材料科学 材料科学
  • 光学是什么?光学是什么?光学是什么?

背景情况:

  • 传统的白天辐射冷却器无法考虑地面发出的热辐射,从而降低了冷却效率.
  • 从地面上升的热辐射干扰并降低标准辐射冷却系统的性能.

研究的目的:

  • 开发能够解决热辐射方向性和地面干扰的辐射冷却器.
  • 为了使垂直和倾斜的表面能够有效地在日间辐射冷却环境下.

主要方法:

  • 设计具有角不对称性和光谱选择性的辐射冷却器.
  • 通过结构调整调节热辐射的角度范围.

主要成果:

  • 新型冷却器有效地避免了地面产生的热辐射的干扰.
  • 该技术克服了用于垂直表面冷却的入射光角度的局限性.
  • 可调节的结构允许智能调节倾斜表面的温度.

结论:

  • 这项工作显著推进了环境下的智能热交互系统.
  • 开辟了辐射冷却技术实际应用的新途径.