Book Chapter

·2010 OPEN ACCESS

Superconductors and Quantum Gravity

Ülker Onbaşlı , Zeynep Guven YTU

Sciyo eBooks

Abstract

In this chapter, the concept of the phase, φ of the order parameter, which is the unique invariant parameter in the universe, has been utilized to derive the net effective mass equation “Ongüas Equation” of the quasi-particles. The net effective mass of the quasiparticles has been reinterpreted in the relativistic manner. The corresponding relativistic energy values for the net effective mass coincide with some part of the unexplored energy gap of high energy physics, which lies between 103 GeV/c2 -1013 GeV/c2. Hence, the unexplored energy gap of the GeV/c2 hierarchic scale of high energy physics finds an opportunity to be investigated by the superconducting frame of reference for the first time. In this context, we hope that, this method enlightens the secret reality behind the origin and the formation of mass. Moreover, in this work, the influence of the quantum gravity has been made clear without any doubt in the superconducting condensed matter media. Furthermore, we believe that the discussion of the symmetry breakings in the context of force unification procedure may also give a positive feedback about the dilemma about the force unification efforts that has been going on for many decades. Ultimately, we hope that this work will unveil the mystery about the universal realities in nature such as the origin of having a mass, force unification process which have been accepted as some of the unsolved problems in physics in 21st century.

Keywords

Superconductivity Theoretical physics Quantum Physics Geology Quantum mechanics

Subject Areas

Physics of Superconductivity and Magnetism ·Condensed Matter Physics ·Physical Sciences
Quantum, superfluid, helium dynamics ·Atomic and Molecular Physics, and Optics ·Physical Sciences
Atomic and Subatomic Physics Research ·Atomic and Molecular Physics, and Optics ·Physical Sciences

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