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SUMMARY:Protecting the Stability of the EW Vacuum
DTSTART;VALUE=DATE-TIME:20190914T130000Z
DTEND;VALUE=DATE-TIME:20190914T133000Z
DTSTAMP;VALUE=DATE-TIME:20260924T004327Z
UID:indico-contribution-17-91@cern.ch
DESCRIPTION:Speakers: Prof. BRANCHINA\, Vincenzo (University of Catania)\n
 http://indico.fuw.edu.pl/contributionDisplay.py?contribId=91&sessionId=17&
 confId=59
LOCATION:University of Warsaw 0.06
URL:http://indico.fuw.edu.pl/contributionDisplay.py?contribId=91&sessionId
 =17&confId=59
END:VEVENT
BEGIN:VEVENT
SUMMARY:A Fresh Look at the Calculation of Tunneling Actions
DTSTART;VALUE=DATE-TIME:20190914T123000Z
DTEND;VALUE=DATE-TIME:20190914T130000Z
DTSTAMP;VALUE=DATE-TIME:20260924T004327Z
UID:indico-contribution-17-0@cern.ch
DESCRIPTION:Speakers: Prof. ESPINOSA\, Jose Ramon (ICREA/IFAE)\nThe calcul
 ation of tunneling actions\, that control the exponential suppression of t
 he decay of metastable phases (like the unstable electroweak vacuum)\, can
  be reformulated as an elementary variational problem in field space. This
  alternative approach circumvents the use of bounces in Euclidean space by
  introducing an auxiliary function\, a tunneling potential Vt that connect
 s smoothly the metastable and stable phases of the field potential V. The 
 tunneling action is obtained as the integral in field space of an action d
 ensity that is a simple function of Vt and V and can be considered as a ge
 neralization of the thin-wall action to arbitrary potentials. This formali
 sm provides new handles for the theoretical understanding of different fea
 tures of vacuum decay\, can be easily extended to include gravitational ef
 fects in an elegant way and has a number of useful applications that I wil
 l discuss.\n\nhttp://indico.fuw.edu.pl/contributionDisplay.py?contribId=0&
 sessionId=17&confId=59
LOCATION:University of Warsaw 0.06
URL:http://indico.fuw.edu.pl/contributionDisplay.py?contribId=0&sessionId=
 17&confId=59
END:VEVENT
BEGIN:VEVENT
SUMMARY:The Higgs mass in the MSSM: precise prediction from the FlexibleEF
 THiggs method with 3-loop matching
DTSTART;VALUE=DATE-TIME:20190914T120000Z
DTEND;VALUE=DATE-TIME:20190914T123000Z
DTSTAMP;VALUE=DATE-TIME:20260924T004327Z
UID:indico-contribution-17-28@cern.ch
DESCRIPTION:Speakers: Prof. STOECKINGER\, Dominik (TU Dresden)\nThe SM-lik
 e Higgs boson mass can be predicted in the MSSM. Loop corrections are very
  important in this prediction. Leading 2-loop and even 3-loop corrections 
 can be significantly larger than the experimental uncertainty reached at t
 he LHC. After giving a review of different possible methods we focus on a 
 recent calculation done in the context of FlexibleSUSY: FlexibleEFTHiggs. 
 This calculation is a so-called hybrid calculation\; it combines advantage
 s of fixed-order calculations with resummation of large logs. It takes int
 o account up to fixed-order 3-loop corrections and resums up to NNN-leadin
 g logarithms.\n\nhttp://indico.fuw.edu.pl/contributionDisplay.py?contribId
 =28&sessionId=17&confId=59
LOCATION:University of Warsaw 0.06
URL:http://indico.fuw.edu.pl/contributionDisplay.py?contribId=28&sessionId
 =17&confId=59
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