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English(EN) Researchers create programmable material that can steer heat and remember its state without power — breakthrough could eventually aid AI chip cooling and silicon photonics

可编程材料可在无电力的情况下引导热量并保持状态

研究人员开发出一种新型可编程材料,能够在无持续电力的情况下引导热量流动并保持其配置。这项突破结合了磁光材料和相变材料,克服了热能控制的局限性。该技术在AI芯片、硅光子学和红外传感器的先进热管理方面具有潜在应用。 AI

影响 可能为高性能AI硬件提供更有效的散热解决方案。

排序理由 学术研究论文,详细介绍了一种具有潜在应用的新型材料。

在 Tom's Hardware 阅读 →

AI 生成摘要 · Google Gemini · 来自 2 个来源。 我们如何撰写摘要 →

可编程材料可在无电力的情况下引导热量并保持状态

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Research
学术研究论文,详细介绍了一种具有潜在应用的新型材料。
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2 independent sources
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infra, product
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High
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55 days old
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报道来源 [2]

  1. Tom's Hardware TIER_1 English(EN) · Etiido Uko ·

    研究人员创造出可编程材料,可在无电力情况下引导热量并保持其状态——这项突破最终可能有助于AI芯片散热和硅光子学

    Researchers created a programmable thermal material that steers heat and retains its state without power, a breakthrough that could benefit AI chips, silicon photonics, and infrared devices.

  2. Mastodon — fosstodon.org TIER_1 English(EN) · [email protected] ·

    研究人员创造出可编程材料,可在无电力的情况下引导热量并保持其状态——这项突破最终可能有助于人工智能...

    Researchers create programmable material that can steer heat and remember its state without power — breakthrough could eventually aid A… Researchers created a programmable thermal material that steers heat and retains its state without power, a breakthrough that could benefit AI …