Deep physics from Small Bodies : Dark Matter in the Solar System (original) (raw)

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Quark Matter in Solar System Cover Page

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Quantum chromodynamics phase transition in the early Universe and quark nuggets Cover Page

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Relics of cosmological quark-hadron phase transition Cover Page

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Quark Matter in the Solar System : Evidence for a Game-Changing Space Resource Cover Page

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Relics of cosmic quark condensation Cover Page

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Astrophysics: Quark matter in compact stars? Cover Page

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The quark-hadron transition in the early universe Cover Page

A Quark-Matter Dominated Universe

We present a new scenario for the development of the Universe after the Big Bang, built on the conjecture that a vast majority of the primordial quark matter did not undergo a phase transition to normal nuclear matter, but rather split up into massive quark objects that remained stable. Hence, such primordial quark matter would make up the so-called dark matter. We discuss, mostly in qualitative terms, the consequences for galaxy formation, the origin of normal matter, the occurrence of massive black-holes in galactic centres and the cosmic gamma-ray bursts. Comment: 32 pages Latex, 3 postscipt figures

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A Quark-Matter Dominated Universe Cover Page

Is Dark Matter made up of Massive Quark Objects?

We suggest that dark matter is made up of massive quark objects that have survived from the Big Bang, representing the ground state of ``baryonic'' matter. Hence, there was no overall phase transition of the original quark matter, but only a split-up into smaller objects. We speculate that normal hadronic matter comes about through enforced phase transitions when such objects merge or collide, which also gives rise to the cosmic gamma-ray bursts.

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Is Dark Matter made up of Massive Quark Objects? Cover Page

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Late formation of quark stars and their possible survival Cover Page