论文标题
生命的天体物理观点。复杂性的增长
An astrophysical perspective of life. The growth of complexity
论文作者
论文摘要
生命的存在是天体物理学中最根本的问题之一。逐渐复杂且显然不可能的生物的有趣存在应该是宇宙中生活的一般趋势。我们正在寻找一般的物理定律,该法律管理任何天体物理环境中复杂性的增长。我们认为存在一个重要的标量场。该标量对特定熵的逆梯度敏感,因此其分布在生物内部倾向于非常高的值。除经典突变外,生命场驱动的突变仅会导致熵的减少。场方程引起了重要波的存在。该理论能够处理生命的起源和生活的进化。我们表明,重要领域使复杂性的增长加速了。
The existence of life is one of the most fundamental problems of astrophysics. The intriguing existence of progressively complex and apparently improbable living beings should be a general tendency of life in the Universe. We are looking for general physical laws governing the growth of complexity in any astrophysical environment. We posit the existence of a vital scalar field. This scalar is sensitive to the gradient of the inverse of specific entropy, such that its distribution tends to very high values in the interior of living beings. Besides the classical mutations, vital field driven mutations only produce decrements of entropy. The field equations give rise to the existence of vital waves. This theory is able to deal with both the origin of life and the evolution of life. We show that the growth of complexity is accelerated by the vital field.