Quantum Forces in a Relativistic Entangled "Space-Time" State in Complex Hamiltonian Dynamics
Farrin Payandeh,
Touraj Mohammadpour
Issue:
Volume 3, Issue 2, April 2016
Pages:
5-9
Received:
28 February 2016
Accepted:
8 March 2016
Published:
18 March 2016
Abstract: Based on complex quantum Hamilton-Jacobi theory and its natural complex spacetime configuration, we realized new states for both positive and negative values of energy and momentum, and we discuss this complex configuration in a relativistic entangled "space-time" state and the resultant 12 extra wave functions than the four solutions of Dirac equation for a free particle. Accordingly, we calculate the quantum forces between particles and antiparticles in a relativistic entangled "space-time" state.
Abstract: Based on complex quantum Hamilton-Jacobi theory and its natural complex spacetime configuration, we realized new states for both positive and negative values of energy and momentum, and we discuss this complex configuration in a relativistic entangled "space-time" state and the resultant 12 extra wave functions than the four solutions of Dirac equa...
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