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Related papers: Return of the Boltzmann Brains

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I have suggested that one possible solution of the Boltzmann brain problem is that the universe is decaying at an astronomical rate, making it likely to decay within 20 billion years. A problem with this suggestion is that it seems to…

High Energy Physics - Theory · Physics 2009-07-27 Don N. Page

Many cosmologists (myself included) have advocated volume weighting for the cosmological measure problem, weighting spatial hypersurfaces by their volume. However, this often leads to the Boltzmann brain problem, that almost all…

High Energy Physics - Theory · Physics 2009-03-27 Don N. Page

Most versions of classical physics imply that if the 4-volume of the entire space-time is infinite or at least extremely large, then random fluctuations in the matter will by coincidence create copies of us in remote places, so called…

General Relativity and Quantum Cosmology · Physics 2018-12-06 Roderich Tumulka

Understanding the observed arrow of time is equivalent, under general assumptions, to explaining why Boltzmann brains do not overwhelm ordinary observers. It is usually thought that this provides a condition on the decay rate of every…

High Energy Physics - Theory · Physics 2015-09-30 Yasunori Nomura

"Boltzmann brains" are human brains that arise as thermal or quantum fluctuations and last at least long enough to think a few thoughts. In many scenarios involving universes of infinite size or duration, Boltzmann brains are infinitely…

High Energy Physics - Theory · Physics 2010-08-05 Matthew Davenport , Ken D. Olum

Eternally inflating universes lead to an infinite number of Boltzmann brains but also an infinite number of ordinary observers. If we use the scale factor measure to regularize these infinities, the ordinary observers dominate the Boltzmann…

High Energy Physics - Theory · Physics 2021-08-04 Ken D. Olum , Param Upadhyay , Alexander Vilenkin

The standard $\Lambda$CDM model provides an excellent fit to current cosmological observations but suffers from a potentially serious Boltzmann Brain problem. If the universe enters a de Sitter vacuum phase that is truly eternal, there will…

High Energy Physics - Phenomenology · Physics 2013-08-23 Kimberly K. Boddy , Sean M. Carroll

We consider the well-known Boltzmann brains problem in frames of simple phantom energy models with little rip and big rip singularity. It is showed that these models (i) satisfy to observational data and (ii) may be free from Boltzmann…

Cosmology and Nongalactic Astrophysics · Physics 2014-10-13 Artyom V. Astashenok , Artyom V. Yurov , Valerian V. Yurov

To make predictions for an eternally inflating "multiverse", one must adopt a procedure for regulating its divergent spacetime volume. Recently, a new test of such spacetime measures has emerged: normal observers - who evolve in pocket…

High Energy Physics - Theory · Physics 2014-11-18 Andrea De Simone , Alan H. Guth , Andrei Linde , Mahdiyar Noorbala , Michael P. Salem , Alexander Vilenkin

Many modern cosmological scenarios feature large volumes of spacetime in a de Sitter vacuum phase. Such models are said to be faced with a "Boltzmann Brain problem" - the overwhelming majority of observers with fixed local conditions are…

High Energy Physics - Theory · Physics 2015-05-14 Kimberly K. Boddy , Sean M. Carroll , Jason Pollack

Unless our universe is decaying at an astronomical rate (i.e., on the present cosmological timescale of Gigayears, rather than on the quantum recurrence timescale of googolplexes), it would apparently produce an infinite number of observers…

High Energy Physics - Theory · Physics 2008-11-26 Don N. Page

Are your perceptions, memories and observational data, a statistical fluctuation out of the thermal equilibrium of the universe, having no correlation with the actual past state of the universe? Arguments are given in the literature for and…

History and Philosophy of Physics · Physics 2026-01-26 David Wolpert , Carlo Rovelli , Jordan Scharnhorst

In a spatially infinite and eternal universe approaching ultimately a de Sitter (or quasi-de Sitter) regime, structure can form by thermal fluctuations as such a space is thermal. The models of Dark Energy invoking holographic principle fit…

High Energy Physics - Theory · Physics 2015-09-15 R. Horvat

This paper extends the recent investigation of the string theory landscape in hep-th/0605266, where it was found that the decay rate of dS vacua to a collapsing space with a negative vacuum energy can be quite large. The parts of space that…

High Energy Physics - Theory · Physics 2009-11-11 Andrei Linde

Observations that we are highly unlikely to be vacuum fluctuations suggest that our universe is decaying at a rate faster than the asymptotic volume growth rate, in order that there not be too many observers produced by vacuum fluctuations…

High Energy Physics - Theory · Physics 2009-02-23 Don N. Page

There are two kinds of quantum fluctuations relevant to cosmology that we focus on in this article: those that form the seeds for structure formation in the early universe and those giving rise to Boltzmann brains in the late universe.…

General Relativity and Quantum Cosmology · Physics 2015-08-06 Sheldon Goldstein , Ward Struyve , Roderich Tumulka

I explore the possibility that the cosmos is fundamentally an equilibrium system, and review the attractive features of such theories. Equilibrium cosmologies are commonly thought to fail due to the ``Boltzmann Brain'' problem. I show that…

High Energy Physics - Theory · Physics 2015-05-20 Andreas Albrecht

Some modern cosmological models predict the appearance of Boltzmann Brains: observers who randomly fluctuate out of a thermal bath rather than naturally evolving from a low-entropy Big Bang. A theory in which most observers are of the…

High Energy Physics - Theory · Physics 2017-02-06 Sean M. Carroll

We address the issue of whether extra dimensions could have an infinite volume and yet reproduce the effects of observable four-dimensional gravity on a brane. There is no normalizable zero-mode graviton in this case, nevertheless correct…

High Energy Physics - Theory · Physics 2009-10-31 G. Dvali , G. Gabadadze , M. Porrati

Are you, with your perceptions, memories and observational data, a Boltzmann brain, namely a fleeting statistical fluctuation out of the thermal equilibrium of the universe? Arguments are given in the literature claiming that this bizarre…

History and Philosophy of Physics · Physics 2024-07-19 Carlo Rovelli , David Wolpert
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