Quantum coherence of biophotons and living systems.

dc.contributor.authorBajpai, R Pen_US
dc.date.accessioned2009-05-28T12:10:59Z
dc.date.available2009-05-28T12:10:59Z
dc.date.issued2003-05-13en_US
dc.description.abstractCoherence is a property of the description of the system in the classical framework in which the subunits of a system act in a cooperative manner. Coherence becomes classical if the agent causing cooperation is discernible otherwise it is quantum coherence. Both stimulated and spontaneous biophoton signals show properties that can be attributed to the cooperative actions of many photon-emitting units. But the agents responsible for the cooperative actions of units have not been discovered so far. The stimulated signal decays with non-exponential character. It is system and situation specific and sensitive to many physiological and environmental factors. Its measurable holistic parameters are strength, shape, relative strengths of spectral components, and excitation curve. The spontaneous signal is non-decaying with the probabilities of detecting various number of photons to be neither normal nor Poisson. The detected probabilities in a signal of Parmelia tinctorum match with probabilities expected in a squeezed state of photons. It is speculated that an in vivo nucleic acid molecule is an assembly of intermittent quantum patches that emit biophoton in quantum transitions. The distributions of quantum patches and their lifetimes determine the holistic features of biophoton signals, so that the coherence of biophotons is merely a manifestation of the coherence of living systems.en_US
dc.description.affiliationInstitute of Self Organising Systems and Biophysics, North Eastern Hill University, Shillong 793022, India. rpbajpai@nehu.ac.inen_US
dc.identifier.citationBajpai RP. Quantum coherence of biophotons and living systems. Indian Journal of Experimental Biology. 2003 May; 41(5): 514-27en_US
dc.identifier.urihttps://imsear.searo.who.int/handle/123456789/57735
dc.language.isoengen_US
dc.source.urihttps://www.niscair.res.in/ScienceCommunication/ResearchJournals/rejour/ijeb/ijeb0.aspen_US
dc.subject.meshBiologyen_US
dc.subject.meshPhotonsen_US
dc.subject.meshQuantum Theoryen_US
dc.titleQuantum coherence of biophotons and living systems.en_US
dc.typeJournal Articleen_US
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