The increasing of popularity of implant treatments and the increasing number performed methods in recent time opens the new possibilities to use together the decontamination and adhesion of implant surface to the organic tissue. These studies are stimulated by a lot of incidence of short-term and long-term complications which took place in the last time. It is proposed a set of modern effects in the bimolecular interaction of radiation with the human organism in order to apply it in bioinformatics and modern medicine. Taking into consideration the advance equipment in photonics like photonic crystals and photonic-crystal fibre we are interested to use this optical systems in modern implants in order to treat the surface infection formed on the surface between the implant and cellular tissue in the process of poor adhesion. Considering the advanced equipments of modern photonics such as photonic crystals or photonic crystal fibers, we propose to use these optical systems in the controlling and managing of modern therapeutic implants. Such metamaterials like photonic crystals, each can be deposited on the implant surface and can be used as a dispersion of UV radiation on the large surface to treat infection on the surface between the implant and adhesion tissue. The adherence of implant to the human tissue may be accompanied to the growth of cells between the elements of bubble structure of implant surface. Here we have a possibility to restore periphery neuronal system in order to feel and to control the surface of the implant by the brain through our neuronal network.
The energy transferring between three q-bits system flying simultaneously through an optical cavity, is discussed. It is observed the migration of energy from one excited radiator with dipole forbidden transitions relatively to another two- radiators with half excitation energy of first atom. Photon entangled state between distinct atoms and their transfer is studied. These atoms in our interpretations are named, D - dipole forbidden atom, S1 and S2 - two dipole active atoms with summer energy ћɷ1 + ћɷ2 = ћɷn, ɷ1 observe the periodical transfer of energy from D- atom to ensemble of two S- atoms. This effect may be used for quantum gates processing in which the energy transfer depends on the input information. The quantum discord and entanglement for this system of q-bits was explored.
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