Using Energy Peaks to Measure New Particle Masses
arXiv:1309.4776 · doi:10.1007/JHEP11(2014)059
Abstract
We discussed in arXiv:1209.0772 that the laboratory frame distribution of the energy of a massless particle from a two-body decay at a hadron collider has a peak whose location is identical to the value of this daughter's (fixed) energy in the rest frame of the corresponding mother particle. For that result to hold we assumed that the mother is unpolarized and has a generic boost distribution in the laboratory frame. In this work we discuss how this observation can be applied for determination of masses of new particles, without requiring a full reconstruction of their decay chains or information about the rest of the event. We focus on a two-step cascade decay of a massive particle that has one invisible particle in the final state: C -> Bb -> Aab, where C, B and A are new particles of which A is invisible and a, b are visible particles. Combining the measurements of the peaks of energy distributions of a and b with that of the edge in their invariant mass distribution, we demonstrate that it is in principle possible to determine separately all three masses of the new particles, in particular, without using any measurement of missing transverse momentum. Furthermore, we show how the use of the peaks in an inclusive energy distribution is generically less affected by combinatorial issues as compared to other mass measurement strategies. For some simplified, yet interesting, scenarios we find that these combinatorial issues are absent altogether. As an example of this general strategy, we study SUSY models where gluino decays to an invisible lightest neutralino via an on-shell bottom squark. Taking into account the dominant backgrounds, we show how the mass of the bottom squark, the gluino and (for some class of spectra) that of the neutralino can be determined using this technique.
42 pages, 11 figures
References in corpus (8)
- Gluino Stransverse Mass
- Measuring superparticle masses at hadron collider using the transverse mass kink
- Dijet Searches for Supersymmetry at the LHC
- Accurate Mass Determinations in Decay Chains with Missing Energy
- A Review of the Mass Measurement Techniques proposed for the Large Hadron Collider
- Kinematical variables towards new dynamics at the LHC
- A New Method for Resolving Combinatorial Ambiguities at Hadron Colliders
- Improved mass measurement using the boundary of many-body phase space
Cited by in corpus (20)
- The 750 GeV Diphoton Excess May Not Imply a 750 GeV Resonance
- Dark Matter "Collider" from Inelastic Boosted Dark Matter
- Determination of the top quark mass circa 2013: methods, subtleties, perspectives
- Gluino reach and mass extraction at the LHC in radiatively-driven natural SUSY
- Lines and Boxes: Unmasking Dynamical Dark Matter through Correlations in the MeV Gamma-Ray Spectrum
- OPTIMASS: A Package for the Minimization of Kinematic Mass Functions with Constraints
- Boxes, Boosts, and Energy Duality: Understanding the Galactic-Center Gamma-Ray Excess through Dynamical Dark Matter
- 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
- Heavy Higgs as a Portal to the Supersymmetric Electroweak Sector
- Identifying Phase Space Boundaries with Voronoi Tessellations
- Determining the Dark Matter Particle Mass through Antler Topology Processes at Lepton Colliders
- On Lepton Flavor Universality in Top Quark Decays
- Measuring Masses in Semi-Invisible Final States at Electron-Positron Colliders
- Energy spectra of massive two-body decay products and mass measurement
- Primordial Black Holes as a Factory of Axions: Extragalactic Photons from Axions
- Mass Measurement Using Energy Spectra in Three-body Decays
- Energy peaks: a high energy physics outlook
- Resolving Histogram Binning Dilemmas with Binless and Binfull Algorithms
- Energy-peak based method to measure top quark mass via B-hadron decay lengths