arXiv:1506.06542·v2·High Energy Physics — Phenomenology
Strong IR Cancellation in Heavy Quarkonium and Precise Top Mass Determination
Y. Kiyo🇯🇵 · G. Mishima🇯🇵 · Y. Sumino🇯🇵
Abstract
Combining recent perturbative analyses on the static QCD potential and the quark pole mass, we find that, for the heavy quarkonium states , and , (1) ultra-soft (US) corrections in the binding energies are small, and (2) there is a stronger cancellation of IR contributions than what has been predicted by renormalon dominance hypothesis. By contrast, for a hypothetical heavy quarkonium system with a small number of active quark flavors (), we observe evidence that renormalon dominance holds accurately and that non-negligible contributions from US corrections exist. In addition, we examine contributions of renormalons at . As an important consequence, we improve on a previous prediction for possible achievable accuracy of top quark --mass measurement at a future linear collider and estimate that in principle 20--30~MeV accuracy is reachable.
Comments: 17 pages, 7 figures, 3 tables; Revisions in ver.2: We added (i) a more conservative error estimate of m_t determination, (ii) discussion on u=+1 and u=-1 renormalons, (iii) interpretation of PS-scheme