Non-unitary Scattering Theory against Generalized Unitary Scattering Theory  

Non-unitary Scattering Theory against Generalized Unitary Scattering Theory

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作  者:Jacek A. Jakiel Wiestaw A. Kantor 

机构地区:[1]Institute of Nuclear Physics Polish Academy of Sciences, PL-31342 Krakow, Poland

出  处:《Computer Technology and Application》2016年第6期287-299,共13页计算机技术与应用(英文版)

摘  要:Comparison of non-unitary and generalized unitary scattering theories is done by means of nuclear monodromy (equivalence of Schrodinger and Maxwell time-independent equations), tunneling and radioactivity. Radioactivity is important part of physics and our life. Its importance stretches from medicine as far as to war strategies. We present theoretical approach to achieve better understanding of the radioactive decay when modified quantum theory is applied. It can be done by updating existing codes to understand better construction of the world and terms and conditions of our existence. The theory modifications are strictly connected with the unimodular M matrix and Wronskian matrices (i.e. their determinants named Wronskians) which create underpinning of so called monodromy being two track wave-function evolution.

关 键 词:Nuclear monodromy RADIOACTIVITY scattering theory UNITARITY TUNNELING boundary condition. 

分 类 号:O472.1[理学—半导体物理] O571.3[理学—物理]

 

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