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:: Volume 4, Issue 1 (Spring & Summer 2019) ::
2019, 4(1): 9-18 Back to browse issues page
Quantum Scalar Field Theory in the Schwarzschild Universe: Weber’s Approach
Abolfazl Jafari
Abstract:   (1089 Views)
Within Weber’s approach, we study the classical and quantum scalar field theory in the Schwarzschild metric. By employing the localized coordinates and the Bateman – Caldirola – Kanai method, we find a Lagrangian density of the scalar fields from the deformed motion equation of them. Also, we show that approximated theory has an exact established solution and Green’s function by replacement the ordinary field’s mass with the u-mass. We know that the new fields do not obey the second quantization relation. So the classical and quantum scalar fields have different treatments in Weber’s method. Thus, we must admit a new background field for quantum cases. Locally homeomorphism between pseudo Riemann's manifold and Minkowski one is considered.
 
Keywords: Quantum Field Theory, Riemann’s Coordinate, Weber’s Method, BCK Model
Full-Text [PDF 582 kb]   (744 Downloads)    
Type of Study: Research | Subject: Special
Received: 2018/04/15 | Accepted: 2020/09/14 | Published: 2020/09/14
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Jafari A. Quantum Scalar Field Theory in the Schwarzschild Universe: Weber’s Approach. Journal title 2019; 4 (1) :9-18
URL: http://jmrph.khu.ac.ir/article-1-54-en.html


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Volume 4, Issue 1 (Spring & Summer 2019) Back to browse issues page
پژوهش های نوین فیزیک Journal Modern Research Physics
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