Presenter Information

Caden SwainFollow

Start Date

12-12-2022 6:20 PM

Description

This paper aims to determine the legitimacy of Shahram Jalalzadeh’s newly-proposed theory proposing dark matter as composed of quantum black hole-white hole entangled states. By comparing and contrasting multiple different theories detailing the formation of white holes, this paper will analyze the consistency of physical properties, both general and quantum, of black and white holes throughout these different theories. Specifically, the quantum nature of the black hole singularity as presented through these theories will be analyzed and compared to Jalalzadeh’s. Finally, this paper will analyze the probability that each theory may be experimentally confirmed in order to more accurately determine the probability that Jalalzadeh’s theory may be experimentally confirmed, provided that there are indeed connections between Jalalzadeh’s theory and these other theories.

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Dr. Jonas Mureika

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  • Honors 2000 Final Proposal.docx (28 kB)
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    Dec 12th, 6:20 PM

    White Holes: Potential Solutions to Dark Matter?

    This paper aims to determine the legitimacy of Shahram Jalalzadeh’s newly-proposed theory proposing dark matter as composed of quantum black hole-white hole entangled states. By comparing and contrasting multiple different theories detailing the formation of white holes, this paper will analyze the consistency of physical properties, both general and quantum, of black and white holes throughout these different theories. Specifically, the quantum nature of the black hole singularity as presented through these theories will be analyzed and compared to Jalalzadeh’s. Finally, this paper will analyze the probability that each theory may be experimentally confirmed in order to more accurately determine the probability that Jalalzadeh’s theory may be experimentally confirmed, provided that there are indeed connections between Jalalzadeh’s theory and these other theories.