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| Tags: density, energy, negative, vacuum |
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#1
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If vacuum had a negative energy density would this cause
the curvature of the inside of a sphere to not be flat? What would the observable astronomical effects of a negative vacuum energy density be? Could it create voids? Could it effect the Greisen-Zatsepin-Kuz'min cutoff or accelerate cosmic rays formed in intergalactic voids? Would it effect orbital periods? I am aware that astronomical observations say the energy density is close to zero. I am wondering how they would differ if it were negative. |
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#2
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"Ed Keane III" wrote in message . .. If vacuum had a negative energy density would this cause the curvature of the inside of a sphere to not be flat? What would the observable astronomical effects of a negative vacuum energy density be? Could it create voids? Could it effect the Greisen-Zatsepin-Kuz'min cutoff or accelerate cosmic rays formed in intergalactic voids? Would it effect orbital periods? I am aware that astronomical observations say the energy density is close to zero. I am wondering how they would differ if it were negative. The cosmological constant represents a net constant negative energy density. Consider a Universe with a pure cosmological constant, A, and nothing else: we get "de Sitter's solution" a(t) = exp(H t), H = sqrt(A / 3) wherein space expands exponentially with time; Hubble's constant, H, is truly independent of time; the age of the Universe is infinite (present time, a = 1 at t = 0). See "Principles of Physical Cosmology" by P.J.E. Peebles [Old Man] |
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