Quantum Approximation for Josephson's Tunneling in Thx DUO2 Nano Material for 535 Tesla at Muon Cyclotron

Author:

Hardiyanto Moh.1

Affiliation:

1. Institut Teknologi Indonesia

Abstract

The convergence quantum states of free covariant equation in Einsteins space with quantum condition is studied using the ABR (Abrikosov-Balseiro-Russell) formulation in convergence approximation for Josephson tunneling is important role for determine of neutrino particle existing, especially after Cerenkovs effect for 517 tesla super magnetic at Large Hadron Collider (LHC) Cyclotron in CERN, Lyon, France based on ThxDUO2nanomaterial. This approaching will be solved the problem for determine the value of interstellar Electrical Conductivity (EC) on DUO2chain reaction, then the post condition of muon has been known exactly. In this research shown the value of EC is 4.32 μeV at 378 tesla magnetic field for 2.1 x 104ci/mm fast thermal neutron floating in 45.7 megawatts adjusted power of CERNs Cyclotron. The resulted by special Electron-Scanning-Nuclear-Absorbtion (ESNA) shown any possibilities of Josephsons tunneling must be boundary by muon particles without neutrino particle existing for 350 456 tesla magnetic field on UO2more enrichment nuclear fuel at CERN, whereas this research has purpose for provide the mathematical formulation to boundary of muons moving at nuclear research reactor to a high degree of accuracy and with Catch-Nuc, one of nuclear beam equipment has a few important value of experimental effort.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference8 articles.

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2. Bray I. and Stelbovics A.T., Phys. Rev. A. 46, pp.58-64 March (2009).

3. Burke. P. G and Seaton M.J., Atomc Technology Journal, Vol. 7, pp.109-110 October (2011).

4. CERN Report of LHC Laboratory, Thx UO2 Interference Structure, France, (2011).

5. Flinder, and Stelbovics A.T., Test of Close-Coupling in the Josephson's Model, Proceedings of the 12th International Symposium on Correlations and Polarization in Atomic Collisions, NASA, USA (2010).

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