Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
The baryon density of the Universe from an improved rate of deuterium burning
by
Boeltzig, A.
, Stöckel, K.
, Gyürky, G.
, Ferraro, F.
, Trezzi, D.
, Corvisiero, P.
, Schiavulli, L.
, Kochanek, I.
, Best, A.
, Fiore, E. M.
, Lugaro, M.
, Guglielmetti, A.
, Menegazzo, R.
, Piatti, D.
, Zavatarelli, S.
, Szücs, T.
, Csedreki, L.
, Bruno, C. G.
, Prati, P.
, Kievsky, A.
, Takács, M. P.
, Broggini, C.
, Bemmerer, D.
, Fülöp, Zs
, Junker, M.
, Pantaleo, F. R.
, Davinson, T.
, Formicola, A.
, Perrino, R.
, Di Leva, A.
, Masha, E.
, Mossa, V.
, Paticchio, V.
, Marigo, P.
, Chillery, T.
, Mangano, G.
, Gustavino, C.
, Ciani, G. F.
, Depalo, R.
, Gervino, G.
, Elekes, Z.
, Marcucci, L. E.
, Imbriani, G.
, Barile, F.
, Viviani, M.
, Cavanna, F.
, Pisanti, O.
, Aliotta, M.
, Caciolli, A.
, Straniero, O.
in
639/766/34/124
/ 639/766/34/4120
/ 639/766/387/1127
/ Abundance
/ Agreements
/ Analysis
/ Astrophysics
/ Baryons
/ Big bang cosmology
/ Bombardment
/ Burning
/ Burning rate
/ Combustion
/ Composition
/ Cosmic rays
/ Cross-sections
/ Density
/ Deuterium
/ Germanium
/ Humanities and Social Sciences
/ Laboratories
/ Light elements
/ Measurement
/ multidisciplinary
/ Neutrinos
/ Nuclear astrophysics
/ Nuclear fusion
/ Nuclear physics
/ Nuclear reactions
/ Nuclei (nuclear physics)
/ Nucleosynthesis
/ Observations
/ Parameter sensitivity
/ Particle physics
/ Physics
/ Proton beams
/ Purity
/ Science
/ Science (multidisciplinary)
/ Thermal properties
/ Universe
2020
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
The baryon density of the Universe from an improved rate of deuterium burning
by
Boeltzig, A.
, Stöckel, K.
, Gyürky, G.
, Ferraro, F.
, Trezzi, D.
, Corvisiero, P.
, Schiavulli, L.
, Kochanek, I.
, Best, A.
, Fiore, E. M.
, Lugaro, M.
, Guglielmetti, A.
, Menegazzo, R.
, Piatti, D.
, Zavatarelli, S.
, Szücs, T.
, Csedreki, L.
, Bruno, C. G.
, Prati, P.
, Kievsky, A.
, Takács, M. P.
, Broggini, C.
, Bemmerer, D.
, Fülöp, Zs
, Junker, M.
, Pantaleo, F. R.
, Davinson, T.
, Formicola, A.
, Perrino, R.
, Di Leva, A.
, Masha, E.
, Mossa, V.
, Paticchio, V.
, Marigo, P.
, Chillery, T.
, Mangano, G.
, Gustavino, C.
, Ciani, G. F.
, Depalo, R.
, Gervino, G.
, Elekes, Z.
, Marcucci, L. E.
, Imbriani, G.
, Barile, F.
, Viviani, M.
, Cavanna, F.
, Pisanti, O.
, Aliotta, M.
, Caciolli, A.
, Straniero, O.
in
639/766/34/124
/ 639/766/34/4120
/ 639/766/387/1127
/ Abundance
/ Agreements
/ Analysis
/ Astrophysics
/ Baryons
/ Big bang cosmology
/ Bombardment
/ Burning
/ Burning rate
/ Combustion
/ Composition
/ Cosmic rays
/ Cross-sections
/ Density
/ Deuterium
/ Germanium
/ Humanities and Social Sciences
/ Laboratories
/ Light elements
/ Measurement
/ multidisciplinary
/ Neutrinos
/ Nuclear astrophysics
/ Nuclear fusion
/ Nuclear physics
/ Nuclear reactions
/ Nuclei (nuclear physics)
/ Nucleosynthesis
/ Observations
/ Parameter sensitivity
/ Particle physics
/ Physics
/ Proton beams
/ Purity
/ Science
/ Science (multidisciplinary)
/ Thermal properties
/ Universe
2020
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
The baryon density of the Universe from an improved rate of deuterium burning
by
Boeltzig, A.
, Stöckel, K.
, Gyürky, G.
, Ferraro, F.
, Trezzi, D.
, Corvisiero, P.
, Schiavulli, L.
, Kochanek, I.
, Best, A.
, Fiore, E. M.
, Lugaro, M.
, Guglielmetti, A.
, Menegazzo, R.
, Piatti, D.
, Zavatarelli, S.
, Szücs, T.
, Csedreki, L.
, Bruno, C. G.
, Prati, P.
, Kievsky, A.
, Takács, M. P.
, Broggini, C.
, Bemmerer, D.
, Fülöp, Zs
, Junker, M.
, Pantaleo, F. R.
, Davinson, T.
, Formicola, A.
, Perrino, R.
, Di Leva, A.
, Masha, E.
, Mossa, V.
, Paticchio, V.
, Marigo, P.
, Chillery, T.
, Mangano, G.
, Gustavino, C.
, Ciani, G. F.
, Depalo, R.
, Gervino, G.
, Elekes, Z.
, Marcucci, L. E.
, Imbriani, G.
, Barile, F.
, Viviani, M.
, Cavanna, F.
, Pisanti, O.
, Aliotta, M.
, Caciolli, A.
, Straniero, O.
in
639/766/34/124
/ 639/766/34/4120
/ 639/766/387/1127
/ Abundance
/ Agreements
/ Analysis
/ Astrophysics
/ Baryons
/ Big bang cosmology
/ Bombardment
/ Burning
/ Burning rate
/ Combustion
/ Composition
/ Cosmic rays
/ Cross-sections
/ Density
/ Deuterium
/ Germanium
/ Humanities and Social Sciences
/ Laboratories
/ Light elements
/ Measurement
/ multidisciplinary
/ Neutrinos
/ Nuclear astrophysics
/ Nuclear fusion
/ Nuclear physics
/ Nuclear reactions
/ Nuclei (nuclear physics)
/ Nucleosynthesis
/ Observations
/ Parameter sensitivity
/ Particle physics
/ Physics
/ Proton beams
/ Purity
/ Science
/ Science (multidisciplinary)
/ Thermal properties
/ Universe
2020
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
The baryon density of the Universe from an improved rate of deuterium burning
Journal Article
The baryon density of the Universe from an improved rate of deuterium burning
2020
Request Book From Autostore
and Choose the Collection Method
Overview
Light elements were produced in the first few minutes of the Universe through a sequence of nuclear reactions known as Big Bang nucleosynthesis (BBN)
1
,
2
. Among the light elements produced during BBN
1
,
2
, deuterium is an excellent indicator of cosmological parameters because its abundance is highly sensitive to the primordial baryon density and also depends on the number of neutrino species permeating the early Universe. Although astronomical observations of primordial deuterium abundance have reached percent accuracy
3
, theoretical predictions
4
–
6
based on BBN are hampered by large uncertainties on the cross-section of the deuterium burning D(
p
,
γ
)
3
He reaction. Here we show that our improved cross-sections of this reaction lead to BBN estimates of the baryon density at the 1.6 percent level, in excellent agreement with a recent analysis of the cosmic microwave background
7
. Improved cross-section data were obtained by exploiting the negligible cosmic-ray background deep underground at the Laboratory for Underground Nuclear Astrophysics (LUNA) of the Laboratori Nazionali del Gran Sasso (Italy)
8
,
9
. We bombarded a high-purity deuterium gas target
10
with an intense proton beam from the LUNA 400-kilovolt accelerator
11
and detected the γ-rays from the nuclear reaction under study with a high-purity germanium detector. Our experimental results settle the most uncertain nuclear physics input to BBN calculations and substantially improve the reliability of using primordial abundances to probe the physics of the early Universe.
High-precision cross-sections of the nuclear reaction that burns deuterium to create helium-3 are used to produce theoretical estimates of the primordial baryon density that are in agreement with recent astronomical observations.
This website uses cookies to ensure you get the best experience on our website.