{"about":{"site":"https://codewithpapers.app","non_affiliation":"Code with Papers and Syntology are not affiliated with, endorsed by, or sponsored by Papers with Code, Meta, or the pwc-archive mirror.","licence":"CC BY-SA 4.0","licence_url":"https://creativecommons.org/licenses/by-sa/4.0/legalcode","attribution":"https://codewithpapers.app/attribution","modified":"archive material modified by Syntology; see the attribution page"},"url":"/paper/heavy-higgs-bosons-at-14-tev-and-100-tev","title":"Heavy Higgs Bosons at 14 TeV and 100 TeV","arxiv_id":"1504.07617","date":"2015-04-28","proceeding":null,"authors":["Jan Hajer","Ying-Ying Li","Tao Liu","John F. H. Shiu"],"abstract":"Searching for Higgs bosons beyond the Standard Model (BSM) is one of the most important missions for hadron colliders. As a landmark of BSM physics, the MSSM Higgs sector at the LHC is expected to be tested up to the scale of the decoupling limit of O(1) TeV, except for a wedge region centered around $\\tan\\beta \\sim 3 -10$, which has been known to be difficult to probe. In this article, we present a dedicated study testing the decoupled MSSM Higgs sector, at the LHC and a next-generation $pp$-collider, proposing to search in channels with associated Higgs productions, with the neutral and charged Higgs further decaying into $tt$ and $tb$, respectively. In the case of neutral Higgs we are able to probe for the so far uncovered wedge region via $pp\\to bb H/A \\to bbtt$. Additionally, we cover the the high $\\tan\\beta$ range with $pp\\to bb H/A \\to bb\\tau\\tau$. The combination of these searches with channels dedicated to the low $\\tan\\beta$ region, such as $pp\\to H/A \\to tt$ and $pp\\to tt H/A \\to tttt$ potentially covers the full $\\tan\\beta$ range. The search for charged Higgs has a slightly smaller sensitivity for the moderate $\\tan\\beta$ region, but additionally probes for the higher and lower $\\tan\\beta$ regions with even greater sensitivity, via $pp\\to tb H^\\pm \\to tbtb$. While the LHC will be able to probe the whole $\\tan\\beta$ range for Higgs masses of O(1) TeV by combining these channels, we show that a future 100 TeV $pp$-collider has a potential to push the sensitivity reach up to $\\sim \\mathcal O(10)$ TeV. In order to deal with the novel kinematics of top quarks produced by heavy Higgs decays, the multivariate Boosted Decision Tree (BDT) method is applied in our collider analyses. The BDT-based tagging efficiencies of both hadronic and leptonic top-jets, and their mutual fake rates as well as the faking rates by other jets ($h$, $Z$, $W$, $b$, etc.) are also presented.","url_abs":"http://arxiv.org/abs/1504.07617v2","url_pdf":"http://arxiv.org/pdf/1504.07617v2.pdf","source":{"archive":"pwc-archive (Hugging Face), CC BY-SA 4.0","snapshot":"2025-07-28","licence_url":"https://creativecommons.org/licenses/by-sa/4.0/legalcode","row_kind":"links_only","authors_date_abstract":"arXiv metadata, CC0 1.0 (https://info.arxiv.org/help/license), from the Kaggle arXiv metadata snapshot of 2026-09-12"},"code_links":[{"paper_slug":"heavy-higgs-bosons-at-14-tev-and-100-tev","repo_url":"https://github.com/BoostedColliderAnalysis/BoCA","is_official":1,"mentioned_in_paper":1,"mentioned_in_github":0,"framework":"none","reach":null}],"tasks":[],"methods":[],"datasets_introduced":[],"methods_introduced":[],"results":[],"syntology":{"syntology_url":null,"atlas_url":null,"mcp":null,"developers":"https://syntology.ai/developers"},"arxiv_metadata":null,"syntology_extracted_results":null}