关于生命,物理学的基本常数告诉了我们什么?

ArXiv Pub Date : 2025-09-11
Pankaj Mehta, Jané Kondev
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引用次数: 0

摘要

20世纪70年代,著名物理学家维克多·韦斯科普夫(Victor Weisskopf)开发了一个著名的研究项目,用物理学的基本常数来定性地解释物质的性质。但有一种物质在韦斯科普夫的分析中明显缺失:生命。在这里,我们发展了韦斯科普夫式的论证,展示了如何使用物理学的基本常数来理解生命系统的特性。通过结合生物物理论证和量纲分析,我们表明,化学自我复制因子的重要特性,如生长产量、最小倍增时间和休眠时的最小功耗,可以使用基本物理常数进行定量估计。这些计算强调了物理定律是如何限制地球上以化学为基础的生命的,如果它存在,那么在我们宇宙的其他地方也是如此。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
What do the fundamental constants of physics tell us about life?

In the 1970s, the renowned physicist Victor Weisskopf famously developed a research program to qualitatively explain properties of matter in terms of the fundamental constants of physics. But there was one type of matter prominently missing from Weisskopf's analysis: life. Here, we develop Weisskopf-style arguments demonstrating how the fundamental constants of physics can be used to understand the properties of living systems. By combining biophysical arguments and dimensional analysis, we show that vital properties of chemical self-replicators, such as growth yield, minimum doubling time, and minimum power consumption in dormancy, can be quantitatively estimated using fundamental physical constants. The calculations highlight how the laws of physics constrain chemistry-based life on Earth, and if it exists, elsewhere in our universe.

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