...
首页> 外文期刊>NeuroQuantology: an interdisciplinary journal of neuroscience and quantum physics >Origin of Quantum Mechanical Results and Life: A Clue from Quantum Biology
【24h】

Origin of Quantum Mechanical Results and Life: A Clue from Quantum Biology

机译:量子力学结果与生命的起源:量子生物学的线索

获取原文
           

摘要

Although quantum mechanics can accurately predict the probability distribution of outcomes in an ensemble of identical systems, it cannot predict the result of an individual system. All the local and global hidden variable theories attempting to explain individual behavior have been proved invalid by experiments (violation of Bell’s inequality) and theory. As an alternative, Schrodinger and others have hypothesized existence of free will in every particle which causes randomness in individual results. However, these free will theories have failed to quantitatively explain the quantum mechanical results. In this paper, we take the clue from quantum biology to get the explanation of quantum mechanical distribution. Recently it was reported that mutations (which are quantum processes) in DNA of E. coli bacteria instead of being random were biased in a direction such that the chance of survival of the bacteria is increased. Extrapolating it, we assume that all the particles including inanimate fundamental particles have a will and that is biased to satisfy the collective goals of the ensemble. Using this postulate, we mathematically derive the correct spin probability distribution without using quantum mechanical formalism (operators and Born’s rule) and exactly reproduce the quantum mechanical spin correlation in entangled pairs. Using our concept, we also mathematically derive the form of quantum mechanical wave function of free particle which is conventionally a postulate of quantum mechanics. Thus, we prove that the origin of quantum mechanical results lies in the will (or consciousness) of the objects biased by the collective goal of ensemble or universe. This biasing by the group on individuals can be called as “coherence” which directly represents the extent of life present in the ensemble. So, we can say that life originates out of establishment of coherence in a group of inanimate particles.
机译:尽管量子力学可以准确地预测一组相同系统中结果的概率分布,但它无法预测单个系统的结果。通过实验(违反贝尔不等式)和理论证明,所有试图解释个体行为的局部和全局隐藏变量理论都是无效的。作为替代,薛定inger和其他人假设在每个粒子中都存在自由意志,这会导致各个结果的随机性。但是,这些自由意志理论未能定量地解释量子力学结果。在本文中,我们从量子生物学的线索中获得了量子力学分布的解释。最近,据报道,大肠杆菌细菌的DNA中的突变(是量子过程)而不是随机的,其方向偏向于使得细菌存活的机会增加。外推它,我们假设包括无生命的基本粒子在内的所有粒子都有一个意志,并且偏向于满足整体的集体目标。使用这种假设,我们可以在不使用量子力学形式主义(运算符和Born规则)的情况下,从数学上得出正确的自旋概率分布,并精确地重现成对纠缠的量子力学自旋相关性。使用我们的概念,我们还可以从数学上推导自由粒子的量子力学波函数的形式,这通常是量子力学的假设。因此,我们证明了量子力学结果的起源在于由整体或​​宇宙的集体目标所偏向的物体的意志(或意识)。群体对个人的这种偏见可以称为“连贯性”,它直接代表了整体生活的程度。因此,我们可以说,生命起源于一组无生命粒子的连贯性的建立。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号