#NullResult
Rutiininomainen nullresult julkaisu kuuluu tieteeseen.
Gravitons exist in all sorts of grand unification physics theories. This #CMSPaper looks for them in the photon+missing energy signature, which is also a good signature to check for #darkmatter by the way. It looks in the 2016 through 2018 CMS data, and is a #nullresult arxiv.org/abs/2511.17310
March 7, 2026 at 7:27 PM
Supersymmetry is a significant theory, primarily if string theory exists, as it implies the existence of supersymmetry. At the LHC, supersymmetry helps model undiscovered particles. This #nullresult #CMSPaper focused on the supersymmetry partner of the top quark, expected to cause busy collisions.
June 24, 2025 at 12:03 PM
Supersymmetry is a significant theory as well as a benchmark, because at the LHC, supersymmetry helps predict the behaviour of undiscovered particles. This #nullresult #CMSPaper focused on the supersymmetry partner of the top quark, expected to cause busy collisions arxiv.org/abs/2506.08825
July 26, 2025 at 12:03 PM
Topic "null result" was dealt yesterday in one workshop, now Samuel Winthorp gives us in-depth presentation. In some disciplines bias against publishing null results is truly an issue (distorting info). #Munin2025 #NullResult #ResearchEthics #OpenData
November 19, 2025 at 10:37 AM
Supersymmetry is a significant theory as well as a benchmark, because at the LHC, supersymmetry helps predict the behaviour of undiscovered particles. This #nullresult #CMSPaper focused on the supersymmetry partner of the top quark, expected to cause busy collisions arxiv.org/abs/2506.08825
July 14, 2025 at 5:22 PM
Supersymmetry is a significant theory as well as a benchmark, because at the LHC, supersymmetry helps predict the behaviour of undiscovered particles. This #nullresult #CMSPaper focused on the supersymmetry partner of the top quark, expected to cause busy collisions arxiv.org/abs/2506.08825
July 5, 2025 at 5:22 PM
#CMSPaper 1391 is a #nullresult that looks for undiscovered particles that travel halfway through the CMS detector before they decay to standard model particles. As these particles normally don't make it to the muon system, we look for photons in the muon system arxiv.org/abs/2503.16699
April 18, 2025 at 10:27 AM
#CMSPaper 1367 looks for extra resonances in the tau-tau invariant mass spectrum (effectively extra heavy Z bosons, these are predicted in connection to grand unification theories). Taus are not easy, but this analysis is the world's most sensitive (but still a #nullresult) https://buff.ly/3D8gpyL
December 15, 2024 at 6:22 PM
CMSPaper 1367 looks for extra resonances in the tau-tau invariant mass spectrum (effectively extra heavy Z bosons, these are predicted in connection to grand unification theories). Taus are not easy, but this analysis is the world's most sensitive (but still a #nullresult) https://buff.ly/3D8gpyL
February 17, 2025 at 6:22 PM
Supersymmetry is a significant theory as well as a benchmark, because at the LHC, supersymmetry helps predict the behaviour of undiscovered particles. This #nullresult #CMSPaper focused on the supersymmetry partner of the top quark, expected to cause busy collisions arxiv.org/abs/2506.08825
July 24, 2025 at 5:22 PM
Gravitons exist in all sorts of grand unification physics theories. This #CMSPaper looks for them in the photon+missing energy signature, which is also a good signature to check for #darkmatter by the way. It looks in the 2016 through 2018 CMS data, and is a #nullresult arxiv.org/abs/2511.17310
March 11, 2026 at 7:47 PM
#CMSPaper 1367 looks for extra resonances in the tau-tau invariant mass spectrum (effectively extra heavy Z bosons, these are predicted in connection to grand unification theories). Taus are not easy, but this analysis is the world's most sensitive (but still a #nullresult) https://buff.ly/3D8gpyL
January 18, 2025 at 1:03 PM
Are there extra Z-boson like undiscovered particles made at higher mass? Or did we miss them because they can only see them when they're made together with quarks? This #CMSPaper scans the dimuon spectrum - it is a #nullresult (no extra Z' bosons spotted!) arxiv.org/abs/2511.11853
March 1, 2026 at 9:03 AM
CMSPaper 1367 looks for extra resonances in the tau-tau invariant mass spectrum (effectively extra heavy Z bosons, these are predicted in connection to grand unification theories). Taus are not easy, but this analysis is the world's most sensitive (but still a #nullresult) buff.ly/3D8gpyL
March 7, 2025 at 7:16 PM
#CMSPaper 1367 looks for extra resonances in the tau-tau invariant mass spectrum (effectively extra heavy Z bosons, these are predicted in connection to grand unification theories). Taus are not easy, but this analysis is the world's most sensitive (but still a #nullresult) https://buff.ly/3D8gpyL
December 21, 2024 at 1:03 PM
#CMSPaper 1367 looks for extra resonances in the tau-tau invariant mass spectrum (effectively extra heavy Z bosons, these are predicted in connection to grand unification theories). Taus are not easy, but this analysis is the world's most sensitive (but still a #nullresult) https://buff.ly/3D8gpyL
January 27, 2025 at 6:22 PM
Are there #Darkmatter particles produced together with #Higgsbosons? This #CMSPaper looks for that signature in the LHC data collected in 2017 and 2018. It is a #NullResult arxiv.org/abs/2601.11330
March 18, 2026 at 7:04 PM
CMSPaper 1367 looks for extra resonances in the tau-tau invariant mass spectrum (effectively extra heavy Z bosons, these are predicted in connection to grand unification theories). Taus are not easy, but this analysis is the world's most sensitive (but still a #nullresult) https://buff.ly/3D8gpyL
February 4, 2025 at 11:27 AM
Gravitons exist in all sorts of grand unification physics theories. This #CMSPaper looks for them in the photon+missing energy signature, which is also a good signature to check for #darkmatter by the way. It looks in the 2016 through 2018 CMS data, and is a #nullresult arxiv.org/abs/2511.17310
February 24, 2026 at 9:05 PM
Supersymmetry is a significant theory as well as a benchmark, because at the LHC, supersymmetry helps predict the behaviour of undiscovered particles. This #nullresult #CMSPaper focused on the supersymmetry partner of the top quark, expected to cause busy collisions arxiv.org/abs/2506.08825
August 11, 2025 at 12:03 PM
Supersymmetry is a significant theory as well as a benchmark, because at the LHC, supersymmetry helps predict the behaviour of undiscovered particles. This #nullresult #CMSPaper focused on the supersymmetry partner of the top quark, expected to cause busy collisions arxiv.org/abs/2506.08825
August 4, 2025 at 5:22 PM
#CMSpaper 1386 examines deviations in extra quark/gluon jet production in lepton-rich collisions, expected to follow a power law decline. The study focuses on Z+W boson signatures plus up to 5+ extra jets. We use this #nullresult to constrain supersymmetry predictions arxiv.org/abs/2503.06726
April 10, 2025 at 5:22 PM
Gravitons exist in all sorts of grand unification physics theories. This #CMSPaper looks for them in the photon+missing energy signature, which is also a good signature to check for #darkmatter by the way. It looks in the 2016 through 2018 CMS data, and is a #nullresult arxiv.org/abs/2511.17310
March 20, 2026 at 8:16 PM
Gravitons exist in all sorts of grand unification physics theories. This #CMSPaper looks for them in the photon+missing energy signature, which is also a good signature to check for #darkmatter by the way. It looks in the 2016 through 2018 CMS data, and is a #nullresult arxiv.org/abs/2511.17310
March 7, 2026 at 10:12 AM
Are there #Darkmatter particles produced together with #Higgsbosons? This #CMSPaper looks for that signature in the LHC data collected in 2017 and 2018. It is a #NullResult arxiv.org/abs/2601.11330
April 7, 2026 at 7:12 AM