Perlmutter cosmology

  • What did Saul Perlmutter discover about the universe?

    Saul Perlmutter, (born 1959, Champaign-Urbana, Illinois, U.S.), American physicist who was awarded the 2011 Nobel Prize for Physics for his discovery of dark energy, a repulsive force that is the dominant component (73 percent) of the universe.Nov 3, 2023.

  • What did Saul Perlmutter win the Nobel Prize for?

    Contact.
    Bio/CV: Saul Perlmutter is a 2011 Nobel Laureate, sharing the prize in Physics for the discovery of the accelerating expansion of the Universe.
    He is a professor of physics at the University of California, Berkeley, where he holds the Franklin W..

  • What is astrophysics and cosmology?

    Astrophysics and Cosmology involve the study of the physical processes that govern the behavior of astronomical objects, and the study of the origin, evolution, composition, and fate of the Universe as a whole..

  • Who won the Nobel Prize for the supernova cosmology project?

    In 2011, Perlmutter was awarded the Nobel Prize in Physics for this work, alongside Adam Riess and Brian P.
    Schmidt from the High-z team..

  • In 2011, Perlmutter was awarded the Nobel Prize in Physics for this work, alongside Adam Riess and Brian P.
    Schmidt from the High-z team.
  • It is perhaps not surprising then that their only children, my parents, both became professors, my mother, Felice Davidson Perlmutter, in Social Work and Social Administration, and my father, Daniel D.
    Perlmutter, in Chemical Engineering.
  • The 2011 Nobel Prize in Physics has been awarded to Saul Perlmutter, Brian Schmidt and Adam Riess, "for the discovery of the accelerating expansion of the Universe through observations of distant supernovae".
Beginning in 1988, Perlmutter began the Supernova Cosmology Project, which used large telescopes to search for supernovae. Perlmutter's team found in 1998 that Type Ia supernovae that had exploded when the universe was younger were fainter than expected. Thus, the supernovae were farther away than expected.
Saul Perlmutter and Brian Schmidt and their teams: the Supernova Cosmology Project and the High-z Supernova Search Team, discovered that the expansion of the Universe is accelerating. An accelerating universe was a crazy result that was hard to accept.

What does Perlmutter do?

Perlmutter is also a lead investigator in the Supernova/Acceleration Probe project, which aims to build a satellite dedicated to finding and studying more supernovae in the distant universe.
The goal is to more precisely determine the rate at which the universe has been accelerating.

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What is Saul Perlmutter status of the cosmological parameters?

Saul Perlmutter Status of the Cosmological Parameters is predicted for a cosmology with a positive cosmological constant is fainter at z =0.5 than the curve for a universe with no cosmological constant, but at much higher redshifts the two curves come back together and cross.
This behavior is very difficult to mimic with an evolutionary effect.

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Where did John Perlmutter get his PhD?

After studying at Harvard University, Perlmutter received his PhD from the University of California, Berkeley in 1986.
He conducted his Nobel Prize-winning research at Lawrence Berkeley National Laboratory.
Perlmutter is a co-founder of the Supernova Cosmology Project and a Professor of Physics at the University of California, Berkeley.

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Who is David Perlmutter?

He is also a member of the National Academy of Sciences.
Perlmutter shared the 2006 Shaw Prize in Astronomy, the 2011 Nobel Prize in Physics, and the 2015 Breakthrough Prize in Fundamental Physics with Brian P.
Schmidt and Adam Riess for providing evidence that the expansion of the universe is accelerating.

Perlmutter is a supercomputer delivered to the National Energy Research Scientific Computing Center of the United States Department of Energy as the successor to Cori.
It is being built by Cray and is based on their Shasta architecture which utilizes Zen 3 based AMD Epyc CPUs (Milan) and next-generation Nvidia Tesla GPUs.
Its intended use-cases are nuclear fusion simulations, climate projections and material and biological research.
Phase 1, completed 27 May 2022, reached 70.9 PFLOPS of processing power.

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