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Using sorted invariant mass variables to evade combinatorial ambiguities in cascade decays

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Title
Using sorted invariant mass variables to evade combinatorial ambiguities in cascade decays
Author(s)
Kim D.; Matchev K.T.; Myeonghun Park
Publication Date
2016-02
Journal
JOURNAL OF HIGH ENERGY PHYSICS, v.2016, no.2, pp.129
Publisher
SPRINGER
Abstract
Abstract: The classic method for mass determination in a SUSY-like cascade decay chain relies on measurements of the kinematic endpoints in the invariant mass distributions of suitable collections of visible decay products. However, the procedure is complicated by combinatorial ambiguities: e.g., the visible final state particles may be indistinguishable (as in the case of QCD jets), or one may not know the exact order in which they are emitted along the decay chain. In order to avoid such combinatorial ambiguities, we propose to treat the final state particles fully democratically and consider the sorted set of the invariant masses of all possible partitions of the visible particles in the decay chain. In particular, for a decay to N visible particles, one considers the sorted sets of all possible n-body invariant mass combinations (2 ≤ n ≤ N) and determines the kinematic endpoint m(n,r) max of the distribution of the r-th largest n-body invariant mass m(n,r) for each possible value of n and r. For the classic example of a squark decay in supersymmetry, we provide analytical formulas for the interpretation of these endpoints in terms of the underlying physical masses. We point out that these measurements can be used to determine the structure of the decay topology, e.g., the number and position of intermediate on-shell resonances. © 2016, The Author(s)
URI
https://pr.ibs.re.kr/handle/8788114/2506
DOI
10.1007/JHEP02(2016)129
ISSN
1029-8479
Appears in Collections:
HiddenCommunity > 1. Journal Papers (저널논문)
Files in This Item:
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