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A Resolution of the Black Hole Information Paradox via Transfinite Set Theory

A Resolution of the Black Hole Information Paradox via Transfinite Set Theory
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摘要 A black hole is essentially a relativistic as well as a quantum object. Therefore the information paradox of black holes is a consequence of the clash between these two most fundamental theories of modern physics. It is logical to conclude that a resolution of the problem requires some form of a quantum gravity theory. The present work proposes such a resolution using set theory and pointless spacetime geometry. A black hole is essentially a relativistic as well as a quantum object. Therefore the information paradox of black holes is a consequence of the clash between these two most fundamental theories of modern physics. It is logical to conclude that a resolution of the problem requires some form of a quantum gravity theory. The present work proposes such a resolution using set theory and pointless spacetime geometry.
机构地区 Department of Physics
出处 《World Journal of Condensed Matter Physics》 2015年第4期249-260,共12页 凝固态物理国际期刊(英文)
关键词 Information PARADOX Black HOLES S. Hawking G. 't Hooft L. Susskind Transfinite Set Theory NONCOMMUTATIVE Geometry Measure Concentration Dvoretzky’s Theorem DARK Energy CASIMIR Effect Nano CASIMIR Reactor Information Paradox Black Holes S. Hawking G. ‘t Hooft L. Susskind Transfinite Set Theory Noncommutative Geometry Measure Concentration Dvoretzky’s Theorem Dark Energy Casimir Effect Nano Casimir Reactor
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