CERN Accelerating science

CERN Document Server Sök i 4 journaler efter:  Sökningen tog 0.74 sekunder. 
1.
Gravitational probes of ultra-light axions / Grin, Daniel (Haverford Coll.) ; Amin, Mustafa A. (Rice U.) ; Gluscevic, Vera (Florida U. ; Princeton U.) ; Grin, Daniel (Haverford Coll.) ; Hlǒzek, Renée (Toronto U., Astron. Dept.) ; Marsh, David J.E. (Inst. Astrophys. Gottingen) ; Poulin, Vivian (U. Montpellier 2, LUPM ; Johns Hopkins U.) ; Prescod-Weinstein, Chanda (New Hampshire U.) ; Smith, Tristan L. (Swarthmore Coll.) ; Ahmed, Zeeshan (SLAC) et al.
The axion is a hypothetical, well-motivated dark-matter particle whose existence would explain the lack of charge-parity violation in the strong interaction. [...]
arXiv:1904.09003.
- 17 p.
Fulltext
2.
Dense matter with eXTP / Watts, Anna L (Amsterdam U., Astron. Inst.) ; Yu, WenFei (Shanghai, Astron. Observ.) ; Poutanen, Juri (Tuorla Observ. ; Nordita) ; Zhang, Shu (Beijing, Inst. High Energy Phys.) ; Bhattacharyya, Sudip (Tata Inst.) ; Bogdanov, Slavko (Columbia U., Astron. Astrophys.) ; Ji, Long (Tubingen U., IAAT) ; Patruno, Alessandro (Leiden Observ.) ; Riley, Thomas E (Amsterdam U., Astron. Inst.) ; Bakala, Pavel (Silesian U., Czech Republic) et al.
In this White Paper we present the potential of the Enhanced X-ray Timing and Polarimetry (eXTP) mission for determining the nature of dense matter, neutron star cores host an extreme density regime which cannot be replicated in a terrestrial laboratory. The tightest statistical constraints on the dense matter equation of state will come from pulse profile modelling of accretion-powered pulsars, burst oscillation sources, and rotation-powered pulsars. [...]
2019 - Published in : Sci. China Phys. Mech. Astron. 62 (2019) 29503
3.
Looking Under a Better Lamppost: MeV-scale Dark Matter Candidates / Caputo, Regina (NASA, Goddard) ; Linden, Tim (Ohio State U.) ; Tomsick, John (UC, Berkeley, Space Sci. Dept.) ; Prescod-Weinstein, Chanda (New Hampshire U.) ; Meyer, Manuel (Stanford U. ; SLAC) ; Kierans, Carolyn (USRA, Huntsville) ; Wadiasingh, Zorawar (NASA, Goddard) ; Harding, J. Patrick (Los Alamos) ; Kopp, Joachim (CERN ; Mainz U.)
The era of precision cosmology has revealed that about 85% of the matter in the universe is dark matter. [...]
arXiv:1903.05845.
- 2019 - 9.
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4.
Dark Matter Science in the Era of LSST / Bechtol, Keith (Wisconsin U., Madison) ; Drlica-Wagner, Alex (Chicago U., Astron. Astrophys. Ctr. ; Chicago U., KICP ; Fermilab) ; Abazajian, Kevork N. (UC, Irvine) ; Abidi, Muntazir (Cambridge U., DAMTP) ; Adhikari, Susmita (KIPAC, Menlo Park) ; Ali-Haïmoud, Yacine (New York U.) ; Annis, James (Fermilab) ; Ansarinejad, Behzad (Durham U.) ; Armstrong, Robert (LLNL, Livermore) ; Asorey, Jacobo (Queensland U. ; Unlisted, AU) et al.
Astrophysical observations currently provide the only robust, empirical measurements of dark matter. [...]
arXiv:1903.04425.
- 2019. - 11 p.
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