TY - JOUR
T1 - Review on effects of long-lived negatively charged massive particles on Big Bang Nucleosynthesis
AU - Kusakabe, Motohiko
AU - Mathews, Grant J.
AU - Kajino, Toshitaka
AU - Cheoun, Myung Ki
N1 - Publisher Copyright:
© World Scientific Publishing Company.
PY - 2017/8/1
Y1 - 2017/8/1
N2 - We review important reactions in the Big Bang Nucleosynthesis (BBN) model involving a long-lived negatively charged massive particle, X-, which is much heavier than nucleons. This model can explain the observed 7Li abundances of metal-poor stars, and predicts a primordial 9Be abundance that is larger than the standard BBN prediction. In the BBN epoch, nuclei recombine with the X- particle. Because of the heavy X- mass, the atomic size of bound states AX is as small as the nuclear size. The nonresonant recombination rates are then dominated by the D-wave → 2P transition for 7Li and 7,9Be. The 7Be destruction occurs via a recombination with the X- followed by a proton capture, and the primordial 7Li abundance is reduced. Also, the 9Be production occurs via the recombination of 7Li and X- followed by deuteron capture. The initial abundance and the lifetime of the X- particles are constrained from a BBN reaction network calculation. We derived parameter region for the 7Li reduction allowed in supersymmetric or Kaluza- Klein (KK) models. We find that either the selectron, smuon, KK electron or KK muon could be candidates for the X- with mX O(1) TeV, while the stau and KK tau cannot.
AB - We review important reactions in the Big Bang Nucleosynthesis (BBN) model involving a long-lived negatively charged massive particle, X-, which is much heavier than nucleons. This model can explain the observed 7Li abundances of metal-poor stars, and predicts a primordial 9Be abundance that is larger than the standard BBN prediction. In the BBN epoch, nuclei recombine with the X- particle. Because of the heavy X- mass, the atomic size of bound states AX is as small as the nuclear size. The nonresonant recombination rates are then dominated by the D-wave → 2P transition for 7Li and 7,9Be. The 7Be destruction occurs via a recombination with the X- followed by a proton capture, and the primordial 7Li abundance is reduced. Also, the 9Be production occurs via the recombination of 7Li and X- followed by deuteron capture. The initial abundance and the lifetime of the X- particles are constrained from a BBN reaction network calculation. We derived parameter region for the 7Li reduction allowed in supersymmetric or Kaluza- Klein (KK) models. We find that either the selectron, smuon, KK electron or KK muon could be candidates for the X- with mX O(1) TeV, while the stau and KK tau cannot.
KW - Big Bang nucleosynthesis
KW - Cosmology
KW - Negatively charged massive particle
UR - https://www.scopus.com/pages/publications/85025821418
U2 - 10.1142/S021830131741004X
DO - 10.1142/S021830131741004X
M3 - 文献综述
AN - SCOPUS:85025821418
SN - 0218-3013
VL - 26
JO - International Journal of Modern Physics E
JF - International Journal of Modern Physics E
IS - 8
M1 - 1741004
ER -