Phase transition and topology in 4d simplicial gravity

Bilke S, Burda Z, Krzywicki A, Petersson B (1997)
In: NUCLEAR PHYSICS B. ELSEVIER SCIENCE BV: 743-745.

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We present data indicating that the recent evidence for the phase transition being of first order does not result from a breakdown of the ergodicity of the algorithm. We also present data showing that the thermodynamical limit of the model is independent of topology.
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Bilke S, Burda Z, Krzywicki A, Petersson B. Phase transition and topology in 4d simplicial gravity. In: NUCLEAR PHYSICS B. ELSEVIER SCIENCE BV; 1997: 743-745.
Bilke, S., Burda, Z., Krzywicki, A., & Petersson, B. (1997). Phase transition and topology in 4d simplicial gravity. NUCLEAR PHYSICS B, 743-745.
Bilke, S., Burda, Z., Krzywicki, A., and Petersson, B. (1997). “Phase transition and topology in 4d simplicial gravity” in NUCLEAR PHYSICS B (ELSEVIER SCIENCE BV), 743-745.
Bilke, S., et al., 1997. Phase transition and topology in 4d simplicial gravity. In NUCLEAR PHYSICS B. ELSEVIER SCIENCE BV, pp. 743-745.
S. Bilke, et al., “Phase transition and topology in 4d simplicial gravity”, NUCLEAR PHYSICS B, ELSEVIER SCIENCE BV, 1997, pp.743-745.
Bilke, S., Burda, Z., Krzywicki, A., Petersson, B.: Phase transition and topology in 4d simplicial gravity. NUCLEAR PHYSICS B. p. 743-745. ELSEVIER SCIENCE BV (1997).
Bilke, S, Burda, Z, Krzywicki, A, and Petersson, Bengt. “Phase transition and topology in 4d simplicial gravity”. NUCLEAR PHYSICS B. ELSEVIER SCIENCE BV, 1997. 743-745.
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