Matches in SemOpenAlex for { <https://semopenalex.org/work/W2154663602> ?p ?o ?g. }
- W2154663602 endingPage "341" @default.
- W2154663602 startingPage "337" @default.
- W2154663602 abstract "We investigate the evolution of the bound state of negatively charged massive particles (CHAMPs) with light elements and discuss its cosmological consequences and the constraint. By numerically solving the Boltzmann equation, we study the time evolutions of such bound states. Since most of negative CHAMPs are captured by 4He, its bound state is positively charged and couples with the electromagnetic plasma. When charged particles constitute a dominant non-relativistic component, density fluctuations of matter cannot grow due to the acoustic damping. This results in the suppression of matter power spectrum from which a severe constraint can be obtained. By arguing constraints from other aspects of cosmology, we show that the constraint from large scale structure gives most stringent one in some representative cases." @default.
- W2154663602 created "2016-06-24" @default.
- W2154663602 creator A5018079616 @default.
- W2154663602 creator A5040006819 @default.
- W2154663602 date "2010-01-01" @default.
- W2154663602 modified "2023-10-13" @default.
- W2154663602 title "Cosmology with long-lived charged massive particles" @default.
- W2154663602 cites W1481599237 @default.
- W2154663602 cites W1606828704 @default.
- W2154663602 cites W1964025867 @default.
- W2154663602 cites W1969957774 @default.
- W2154663602 cites W1971783723 @default.
- W2154663602 cites W1980624058 @default.
- W2154663602 cites W1982361078 @default.
- W2154663602 cites W1982775434 @default.
- W2154663602 cites W1985657352 @default.
- W2154663602 cites W1994022562 @default.
- W2154663602 cites W1994056245 @default.
- W2154663602 cites W1997038724 @default.
- W2154663602 cites W1997046285 @default.
- W2154663602 cites W2000955316 @default.
- W2154663602 cites W2006992439 @default.
- W2154663602 cites W2007178028 @default.
- W2154663602 cites W2008015949 @default.
- W2154663602 cites W2009366120 @default.
- W2154663602 cites W2010581546 @default.
- W2154663602 cites W2011610133 @default.
- W2154663602 cites W2011892969 @default.
- W2154663602 cites W2012218734 @default.
- W2154663602 cites W2016877944 @default.
- W2154663602 cites W2017156995 @default.
- W2154663602 cites W2024802349 @default.
- W2154663602 cites W2025369491 @default.
- W2154663602 cites W2029668569 @default.
- W2154663602 cites W2034484045 @default.
- W2154663602 cites W2034700463 @default.
- W2154663602 cites W2038020746 @default.
- W2154663602 cites W2041604169 @default.
- W2154663602 cites W2043378856 @default.
- W2154663602 cites W2045017543 @default.
- W2154663602 cites W2052163527 @default.
- W2154663602 cites W2052209977 @default.
- W2154663602 cites W2055873668 @default.
- W2154663602 cites W2056097433 @default.
- W2154663602 cites W2057353159 @default.
- W2154663602 cites W2062025689 @default.
- W2154663602 cites W2075381220 @default.
- W2154663602 cites W2075390602 @default.
- W2154663602 cites W2076232089 @default.
- W2154663602 cites W2077559697 @default.
- W2154663602 cites W2077764311 @default.
- W2154663602 cites W2082668185 @default.
- W2154663602 cites W2085120873 @default.
- W2154663602 cites W2086963345 @default.
- W2154663602 cites W2091096388 @default.
- W2154663602 cites W2094552300 @default.
- W2154663602 cites W2101912325 @default.
- W2154663602 cites W2103370723 @default.
- W2154663602 cites W2104310155 @default.
- W2154663602 cites W2104970629 @default.
- W2154663602 cites W2109350291 @default.
- W2154663602 cites W2116172336 @default.
- W2154663602 cites W2129707474 @default.
- W2154663602 cites W2131517707 @default.
- W2154663602 cites W2135638431 @default.
- W2154663602 cites W2137704523 @default.
- W2154663602 cites W2139031955 @default.
- W2154663602 cites W2139692428 @default.
- W2154663602 cites W2145436518 @default.
- W2154663602 cites W2148857294 @default.
- W2154663602 cites W2150284227 @default.
- W2154663602 cites W2162750483 @default.
- W2154663602 cites W2169963214 @default.
- W2154663602 cites W2172240363 @default.
- W2154663602 cites W2178313175 @default.
- W2154663602 cites W2963765929 @default.
- W2154663602 cites W3098481446 @default.
- W2154663602 cites W3102186482 @default.
- W2154663602 cites W3102804998 @default.
- W2154663602 cites W3103421581 @default.
- W2154663602 cites W3104327372 @default.
- W2154663602 cites W3104839543 @default.
- W2154663602 cites W3121266276 @default.
- W2154663602 cites W2030690537 @default.
- W2154663602 cites W2121818355 @default.
- W2154663602 doi "https://doi.org/10.1016/j.physletb.2009.11.051" @default.
- W2154663602 hasPublicationYear "2010" @default.
- W2154663602 type Work @default.
- W2154663602 sameAs 2154663602 @default.
- W2154663602 citedByCount "21" @default.
- W2154663602 countsByYear W21546636022012 @default.
- W2154663602 countsByYear W21546636022013 @default.
- W2154663602 countsByYear W21546636022014 @default.
- W2154663602 countsByYear W21546636022015 @default.
- W2154663602 countsByYear W21546636022017 @default.
- W2154663602 countsByYear W21546636022020 @default.
- W2154663602 crossrefType "journal-article" @default.
- W2154663602 hasAuthorship W2154663602A5018079616 @default.