[论文解读] A new empirical approach in the Search for Extraterrestrial Intelligence: Astrobiological nonlocality at the cosmological level
本文提出了一种新颖的搜寻地外文明计划(SETI)经验方法,通过探索类地外生物学非定域性——可能通过生物系统中的量子纠缠实现在超光速通信。若可重复,这将使通过非定域量子关联而非传统无线电波信号探测地外文明成为可能。
Over a period of several decades a concerted effort has been made to determine whether intelligent life exists outside of our solar system, known as the Search for Extraterrestrial Intelligence or SETI. This has been based primarily upon attempting to intercept possible radio transmissions at different frequencies with arrays of radio telescopes. In addition, astrophysical observations have also been undertaken to see if other worlds or solar systems exist with similar conditions such as ours, which might be conducive to life. And, numerous papers have been written exploring different possibilities for the existence of life or why we have not observed it as of yet, since none of these approaches have been successful. It may now be possible to explore this issue from another standpoint. Recent theoretical and experimental results in the field of biophysics appear to indicate the possibility of quantum entanglement and nonlocality at the biological level, between spatially separated pairs of human subjects and also between basins containing neurons derived from human neural stem cells. If this research continues to be upheld in a more replicable fashion, this could have very important implications in the area of controllable superluminal communication. Experiments are proposed in an attempt to address the issue of whether controllable superluminal communication is possible and, if it is, to utilize it in an attempt to determine if extraterrestrial intelligence really exists, within the framework of astrobiological nonlocality.
研究动机与目标
- 探究在人类神经系统中观察到的量子非定域性是否可扩展至宇宙尺度,以实现星际通信。
- 通过提出一种替代的经验框架,解决基于无线电波信号的传统SETI方法长期失败的问题。
- 探讨利用基于生物的量子纠缠作为探测地外文明机制的可行性。
- 为‘类地外生物学非定域性’建立理论与实验基础,作为SETI研究的新范式。
- 提出实验方案,以测试利用神经源生物系统实现可控超光速通信。
提出的方法
- 利用近期实验结果,表明人类受试者及人类神经干细胞培养池之间存在量子纠缠与非定域性。
- 将这些生物非定域性发现扩展至宇宙学框架,提出此类效应可被用于星际信号传输。
- 概述实验设计,以检验生物系统中的非定域量子关联是否可被控制并实现规模化。
- 引入‘类地外生物学非定域性’概念,作为SETI的新理论框架,与基于无线电的探测方法相区别。
- 提出若生物系统中的非定域性可重复且可控,则可能实现跨星际距离的超光速通信。
- 依赖从生物物理学实验到宇宙学应用的理论外推,无需引入新的物理定律。
实验结果
研究问题
- RQ1能否将人类神经系统中观察到的量子非定域性扩展至星际或宇宙尺度?
- RQ2是否可通过基于生物的量子纠缠实现可控的超光速通信?
- RQ3类地外生物学非定域性能否作为基于无线电的SETI探测地外文明的可行替代方案?
- RQ4可重复的生物非定域性对高级文明的存在性与可探测性有何影响?
- RQ5如何在宇宙学背景下实验验证并利用生物系统中的非定域量子关联?
主要发现
- 本文报告称,近期生物物理学实验已观察到空间分离的人类受试者之间以及神经干细胞培养池之间存在非定域量子关联。
- 这些发现表明可能存在生物层面的量子纠缠,尽管结果仍属初步,需进一步重复验证。
- 作者认为,若此类非定域性可重复且可控,则可能实现跨星际距离的超光速通信。
- 本文未提供超光速通信的实证确认,但将其作为可检验的假说提出。
- 它提出,类地外生物学非定域性可能提供一种新的探测机制,用于探测地外文明,且独立于无线电波信号。
- 其主要贡献在于提出了一套基于量子生物学与非定域性的新经验方法的理论与方法论框架。
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