Hostname: page-component-89b8bd64d-z2ts4 Total loading time: 0 Render date: 2026-05-08T03:15:42.733Z Has data issue: false hasContentIssue false

Beyond Combination: How Cosmic Consciousness Grounds Ordinary Experience

Published online by Cambridge University Press:  20 December 2018

ITAY SHANI
Affiliation:
SUN YAT SEN UNIVERSITYishani479@hotmail.com
JOACHIM KEPPLER
Affiliation:
DIWISS
Rights & Permissions [Opens in a new window]

Abstract

The aim of this paper is twofold. First, our purpose is to propose and motivate a novel and scientifically informed variant of cosmopsychism, namely, the view that the experiences of ordinary subjects are ultimately grounded in an all-pervading cosmic consciousness. Second, we will demonstrate that this approach generates promising avenues for addressing familiar problems of phenomenal constitution. We use stochastic electrodynamics (SED) as the physical bedrock of our approach, supplementing it with key insights about the nature of consciousness long emphasized in eastern philosophy and other wisdom traditions. We proceed to show that our approach substantiates an intriguing way of thinking about the dynamical emergence of ordinary consciousness from cosmic consciousness, identifying the latter with the vacuum state of quantum field theory. Finally, we argue that the present approach is well suited to address problems of phenomenal constitution, in particular as they pertain to the qualities and structure of experience and to the generation of subjects.

Information

Type
Articles
Creative Commons
Creative Common License - CCCreative Common License - BY
This is an Open Access article, distributed under the terms of the Creative Commons Attribution licence (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted re-use, distribution, and reproduction in any medium, provided the original work is properly cited.
Copyright
Copyright © American Philosophical Association 2018
Figure 0

Figure 1. (A) Every material system can be regarded as an open system in permanent contact with the random ZPF. Due to their interaction with the initially uncorrelated field modes, the system components acquire a stochastic motion and behave as stochastic oscillators. (B) A system that is sufficiently shielded from disruptive thermal influences can reach a dynamically stable state (i.e., an attractor) that is orchestrated by the ZPF. As a consequence, the system enters the quantum regime and displays long-range coherence, which in turn results in a phase-locked coupling of the field modes that are involved in the maintenance of the attractor dynamics. (C) Since such a phase locking increases the information content of the ZPF, the modified ZPF state accompanying the formation of an attractor can be viewed as a ZPF information state. (D) Seen from a different perspective, a quantum system features the characteristics of a resonant oscillator that extracts its system-specific set of resonance frequencies selectively from the full frequency spectrum of the background field.

Figure 1

Figure 2. (A) The theoretical framework is based on the hypothesis that the all-pervasive ZPF is the carrier of consciousness, that is, all shades of phenomenal awareness are woven into the fabric of the ZPF. (B) Under this assumption, the principle of dynamical coupling of sets of ZPF modes is eminently suitable for the extraction of an enormous variety of shades of consciousness from the phenomenal color palette immanent in the ZPF. (C) The quantity of consciousness of a system is determined by the dynamically accessible part of the ZPF spectrum and the degree of phase locking the system is able to establish in this part. Simple conscious states are characterized by a low degree of phase locking. (D) In contrast, complex conscious states are characterized by a large number of phase-locked ZPF modes.