Physics and the Real World

被引:0
作者
George F. R. Ellis
机构
[1] University of Cape Town,Mathematics Department
来源
Foundations of Physics | 2006年 / 36卷
关键词
Physics; emergence; causality;
D O I
暂无
中图分类号
学科分类号
摘要
Physics and chemistry underlie the nature of all the world around us, including human brains. Consequently some suggest that in causal terms, physics is all there is. However, we live in an environment dominated by objects embodying the outcomes of intentional design (buildings, computers, teaspoons). The present day subject of physics has nothing to say about the intentionality resulting in existence of such objects, even though this intentionality is clearly causally effective. This paper examines the claim that the underlying physics uniquely causally determines what happens, even though we cannot predict the outcome. It suggests that what occurs is the contextual emergence of complexity: the higher levels in the hierarchy of complexity have autonomous causal powers, functionally independent of lower level processes. This is possible because top-down causation takes place as well as bottom-up action, with higher level contexts determining the outcome of lower level functioning and even modifying the nature of lower level constituents. Stored information plays a key role, resulting in non-linear dynamics that is non-local in space and time. Brain functioning is causally affected by abstractions such as the value of money and the theory of the laser. These are realised as brain states in individuals, but are not equivalent to them. Consequently physics per se cannot causally determine the outcome of human creativity, rather it creates the possibility space allowing human intelligence to function autonomously. The challenge to physics is to develop a realistic description of causality in truly complex hierarchical structures, with top-down causation and memory effects allowing autonomous higher levels of order to emerge with genuine causal powers.
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页码:227 / 262
页数:35
相关论文
共 23 条
[1]  
Anderson P.W.(2005)“Emerging physics: a fresh approach to viewing the complexity of the universe” Nature 434 701-undefined
[2]  
Boshoff A.(2004)“Molecular chaperones in biology, medicine and protein biotechnology” South Afr. J. Sci. 100 665-undefined
[3]  
Connor C.E.(2005)“Friends and grandmothers” Nature 435 1036-undefined
[4]  
Dirac P.A.M.(1929)“Quantum mechanics of many electron systems” Proc. R. Soc. A123 714-undefined
[5]  
Dobson C.M.(2004)“Principles of protein folding, misfolding, and aggregation” Semi. Cell Dev. Biol. 15 3-undefined
[6]  
Ellis G.F.R.(2002)“Cosmology and local physics” New Astron. Revi. 46 645-undefined
[7]  
Ellis G.F.R.(2005)“Physics, complexity, and causality” Nature 435 743-undefined
[8]  
Ellis G.F.R.(2005)“Physics and the real world” Phys. Today July 49-undefined
[9]  
Glimcher P.W.(2005)“Indeterminacy in brain and behaviour” Ann. Rev. Psychol. 56 25-undefined
[10]  
Hartmann S.(2001)“Effective field theories, reductionism, and scientific explanation” Stud. Hist. Phil. Mod. Phys. 32 267-undefined