-channel) messenger fields: scalar, pseudoscalar, vector or axial-vector. Our analysis extends and updates the previously available results for the LHC at 8 and 14 TeV to 100 TeV for models with all four messenger types. We revisit and improve the analysis at 14 TeV, by studying a variety of analysis techniques, concluding that the most discriminating variables correspond to the missing transverse energy and the azimuthal angle between jets in the final state. Going to 100 TeV, the limits on simplified models of dark matter are enhanced significantly, in particular for heavier mediators and dark sector particles, for which the available phase space at the LHC is restricted. The possibility of a 100 TeV collider provides an unprecedented cov...
Scalar dark energy fields that couple to the standard model can give rise to observable signatures a...
In this paper we consider particle production at a future circular hadron collider with 100 TeV cent...
The first collider search for dark matter arising from a strongly coupled hidden sector is presented...
We investigate the reach of the LHC Run 2 and that of a future circular hadron collider with up to 1...
We outline and investigate a set of benchmark simplified models with the aim of providing a minimal ...
This document summarises the proposal of the LHC Dark Matter Working Group on how to present LHC res...
Many composite Higgs models predict the existence of vector-like quarks with masses outside the reac...
In this note we establish LHC limits on a variety of benchmark models for hidden sector physics usin...
Dark sectors with strong interactions have received considerable interest. Assuming the existence of...
We explore the ability of the high luminosity LHC to test models which can explain the 750 GeV dipho...
The existence of dark matter in our universe is supported by many astrophysical observations and is ...
We introduce a Minimal Simplified Dark Matter (MSDM) framework to quantitatively characterise dark m...
We study an extension of the Standard Model that addresses the hints of lepton flavour universality ...
GeV-scale dark matter is an increasingly attractive target for direct detection, indirect detection,...
Recent studies have shown that searches in the mono-photon and missing energy final state can be use...
Scalar dark energy fields that couple to the standard model can give rise to observable signatures a...
In this paper we consider particle production at a future circular hadron collider with 100 TeV cent...
The first collider search for dark matter arising from a strongly coupled hidden sector is presented...
We investigate the reach of the LHC Run 2 and that of a future circular hadron collider with up to 1...
We outline and investigate a set of benchmark simplified models with the aim of providing a minimal ...
This document summarises the proposal of the LHC Dark Matter Working Group on how to present LHC res...
Many composite Higgs models predict the existence of vector-like quarks with masses outside the reac...
In this note we establish LHC limits on a variety of benchmark models for hidden sector physics usin...
Dark sectors with strong interactions have received considerable interest. Assuming the existence of...
We explore the ability of the high luminosity LHC to test models which can explain the 750 GeV dipho...
The existence of dark matter in our universe is supported by many astrophysical observations and is ...
We introduce a Minimal Simplified Dark Matter (MSDM) framework to quantitatively characterise dark m...
We study an extension of the Standard Model that addresses the hints of lepton flavour universality ...
GeV-scale dark matter is an increasingly attractive target for direct detection, indirect detection,...
Recent studies have shown that searches in the mono-photon and missing energy final state can be use...
Scalar dark energy fields that couple to the standard model can give rise to observable signatures a...
In this paper we consider particle production at a future circular hadron collider with 100 TeV cent...
The first collider search for dark matter arising from a strongly coupled hidden sector is presented...