Abstract: In this paper we show in the water confined within the inner hollow of brain microtubules there exist the conditions to allow a spontaneous QED quantum vacuum phase transition towards a macroscopic coherent quantum state, characterized by a phased oscillation between the water molecules states and an auto-generated electromagnetic field associated to a suitable electronic transition in them. As a result, a field of superradiant photons, whose frequency is smaller than the corresponding frequency belonging to a free photon with the same wavelength, is generated. This superradiant field is characterized by an evanescent tail exceeding the microtubules dimension and whose persistence against environmental decoherence is ensured by its own QED coherent behaviour.
DOI: *As the DOI is a unique identifier, it is already available in the pdf version. **The DOI link will be activated in the first midst of January 2026.
WSEAS Transactions on Biology and Biomedicine, ISSN / E-ISSN: 1109-9518 / 2224-2902, Volume 12, 2015, Art. #13
Luigi Maxmilian Caligiuri, "Electronic QED Coherence in Brain Microtubules," WSEAS Transactions on Biology and Biomedicine, vol. 12, pp. 104-112, 2015, DOI:
Luigi Maxmilian Caligiuri. Electronic QED Coherence in Brain Microtubules.
WSEAS Transactions on Biology and Biomedicine. 2015;12:104-112.