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Uncertainties in WIMP Dark Matter Scattering Revisited
We revisit the uncertainties in the calculation of spin-independent scattering matrix elements for the scattering of WIMP dark matter particles on nuclear matter. In addition to discussing the uncertainties due to limitations in our knowledge of the nucleonic matrix elements of the light quark scala...
Autores principales: | , , |
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Lenguaje: | eng |
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2018
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1140/epjc/s10052-018-6047-y http://cds.cern.ch/record/2320060 |
_version_ | 1780958466114846720 |
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author | Ellis, John Nagata, Natsumi Olive, Keith A. |
author_facet | Ellis, John Nagata, Natsumi Olive, Keith A. |
author_sort | Ellis, John |
collection | CERN |
description | We revisit the uncertainties in the calculation of spin-independent scattering matrix elements for the scattering of WIMP dark matter particles on nuclear matter. In addition to discussing the uncertainties due to limitations in our knowledge of the nucleonic matrix elements of the light quark scalar densities $\langle N |{{{\bar{u}}}} u, {{{\bar{d}}}} d, {{{\bar{s}}}} s| N \rangle $ , we also discuss the importances of heavy quark scalar densities $\langle N |{{{\bar{c}}}} c, {{{\bar{b}}}} b, {{{\bar{t}}}} t| N \rangle $ , and comment on uncertainties in quark mass ratios. We analyze estimates of the light-quark densities made over the past decade using lattice calculations and/or phenomenological inputs. We find an uncertainty in the combination $\langle N |{{{\bar{u}}}} u + {{{\bar{d}}}} d | N \rangle $ that is larger than has been assumed in some phenomenological analyses, and a range of $\langle N |{{{\bar{s}}}} s| N \rangle $ that is smaller but compatible with earlier estimates. We also analyze the importance of the ${{{\mathcal {O}}}}(\alpha _s^3)$ calculations of the heavy-quark matrix elements that are now available, which provide an important refinement of the calculation of the spin-independent scattering cross section. We use for illustration a benchmark CMSSM point in the focus-point region that is compatible with the limits from LHC and other searches. |
id | cern-2320060 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2018 |
record_format | invenio |
spelling | cern-23200602023-09-12T03:14:09Zdoi:10.1140/epjc/s10052-018-6047-yhttp://cds.cern.ch/record/2320060engEllis, JohnNagata, NatsumiOlive, Keith A.Uncertainties in WIMP Dark Matter Scattering Revisitedhep-exParticle Physics - Experimentastro-ph.COAstrophysics and Astronomyhep-phParticle Physics - PhenomenologyWe revisit the uncertainties in the calculation of spin-independent scattering matrix elements for the scattering of WIMP dark matter particles on nuclear matter. In addition to discussing the uncertainties due to limitations in our knowledge of the nucleonic matrix elements of the light quark scalar densities $\langle N |{{{\bar{u}}}} u, {{{\bar{d}}}} d, {{{\bar{s}}}} s| N \rangle $ , we also discuss the importances of heavy quark scalar densities $\langle N |{{{\bar{c}}}} c, {{{\bar{b}}}} b, {{{\bar{t}}}} t| N \rangle $ , and comment on uncertainties in quark mass ratios. We analyze estimates of the light-quark densities made over the past decade using lattice calculations and/or phenomenological inputs. We find an uncertainty in the combination $\langle N |{{{\bar{u}}}} u + {{{\bar{d}}}} d | N \rangle $ that is larger than has been assumed in some phenomenological analyses, and a range of $\langle N |{{{\bar{s}}}} s| N \rangle $ that is smaller but compatible with earlier estimates. We also analyze the importance of the ${{{\mathcal {O}}}}(\alpha _s^3)$ calculations of the heavy-quark matrix elements that are now available, which provide an important refinement of the calculation of the spin-independent scattering cross section. We use for illustration a benchmark CMSSM point in the focus-point region that is compatible with the limits from LHC and other searches.We revisit the uncertainties in the calculation of spin-independent scattering matrix elements for the scattering of WIMP dark matter particles on nuclear matter. In addition to discussing the uncertainties due to limitations in our knowledge of the nucleonic matrix elements of the light quark scalar densities < N |{\bar u} u, {\bar d} d, {\bar s} s| N>, we also discuss the importances of heavy quark scalar densities < N |{\bar c} c, {\bar b} b, {\bar t} t| N >, and comment on uncertainties in quark mass ratios. We analyze estimates of the light-quark densities made over the past decade using lattice calculations and/or phenomenological inputs. We find an uncertainty in the combination < N |{\bar u} u + {\bar d} d | N > that is larger than has been assumed in some phenomenological analyses, and a range of < N |{\bar s} s| N > that is smaller but compatible with earlier estimates. We also analyze the importance of the {\cal O}(\alpha_s^3) calculations of the heavy-quark matrix elements that are now available, which provide an important refinement of the calculation of the spin-independent scattering cross section. We use for illustration a benchmark CMSSM point in the focus-point region that is compatible with the limits from LHC and other searches.arXiv:1805.09795KCL-PH-TH/2018-19CERN-TH/2018-123UMN-TH-3719/18FTPI-MINN-18/10UT-18-12oai:cds.cern.ch:23200602018-05-24 |
spellingShingle | hep-ex Particle Physics - Experiment astro-ph.CO Astrophysics and Astronomy hep-ph Particle Physics - Phenomenology Ellis, John Nagata, Natsumi Olive, Keith A. Uncertainties in WIMP Dark Matter Scattering Revisited |
title | Uncertainties in WIMP Dark Matter Scattering Revisited |
title_full | Uncertainties in WIMP Dark Matter Scattering Revisited |
title_fullStr | Uncertainties in WIMP Dark Matter Scattering Revisited |
title_full_unstemmed | Uncertainties in WIMP Dark Matter Scattering Revisited |
title_short | Uncertainties in WIMP Dark Matter Scattering Revisited |
title_sort | uncertainties in wimp dark matter scattering revisited |
topic | hep-ex Particle Physics - Experiment astro-ph.CO Astrophysics and Astronomy hep-ph Particle Physics - Phenomenology |
url | https://dx.doi.org/10.1140/epjc/s10052-018-6047-y http://cds.cern.ch/record/2320060 |
work_keys_str_mv | AT ellisjohn uncertaintiesinwimpdarkmatterscatteringrevisited AT nagatanatsumi uncertaintiesinwimpdarkmatterscatteringrevisited AT olivekeitha uncertaintiesinwimpdarkmatterscatteringrevisited |