Using sorted invariant mass variables to evade combinatorial ambiguities in cascade decays
arXiv:1512.02222 · doi:10.1007/JHEP02(2016)129
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.
41 pages, 26 figures
References in corpus (9)
- Study of the mass and spin-parity of the Higgs boson candidate via its decays to Z boson pairs
- Using Subsystem MT2 for Complete Mass Determinations in Decay Chains with Missing Energy at Hadron Colliders
- A Review of the Mass Measurement Techniques proposed for the Large Hadron Collider
- Using kinematic boundary lines for particle mass measurements and disambiguation in SUSY-like events with missing energy
- Precise reconstruction of sparticle masses without ambiguities
- A Review of Spin Determination at the LHC
- Constrained invariant mass distributions in cascade decays. The shape of the "-threshold" and similar distributions
- A New Method for Resolving Combinatorial Ambiguities at Hadron Colliders
- Three body kinematic endpoints in SUSY models with non-universal Higgs masses
Cited by in corpus (13)
- LHC Signals from Cascade Decays of Warped Vector Resonances
- Resolving Combinatorial Ambiguities in Dilepton Event Topologies with Constrained Variables
- Detecting kinematic boundary surfaces in phase space: particle mass measurements in SUSY-like events
- Testing Invisible Momentum Ansatze in Missing Energy Events at the LHC
- Identifying Phase Space Boundaries with Voronoi Tessellations
- Singularity Variables for Missing Energy Event Kinematics
- Enhancing the discovery prospects for SUSY-like decays with a forgotten kinematic variable
- Multi-Dimensional Phase Space Methods for Mass Measurements and Decay Topology Determination
- Dreaming Awake: Disentangling the Underlying Physics in Case of a SUSY-like Discovery at the LHC
- Finding Wombling Boundaries in LHC Data with Voronoi and Delaunay Tessellations
- Identifying the production process of new physics at colliders; symmetric or asymmetric?
- is all you need: production of multiple semi-invisible resonances at hadron colliders
- Ordered Kinematic Endpoints for 5-body Cascade Decays