International audienceWe examine the theoretical motivations for long-lived particle (LLP) signals at the LHC in a comprehensive survey of standard model (SM) extensions. LLPs are a common prediction of a wide range of theories that address unsolved fundamental mysteries such as naturalness, dark matter, baryogenesis and neutrino masses, and represent a natural and generic possibility for physics beyond the SM (BSM). In most cases the LLP lifetime can be treated as a free parameter from the m scale up to the Big Bang Nucleosynthesis limit of m. Neutral LLPs with lifetimes above 100 m are particularly difficult to probe, as the sensitivity of the LHC main detectors is limited by challenging backgrounds, triggers, and small acceptances. MATHU...
Particles beyond the Standard Model (SM) can generically have lifetimes that are long compared to SM...
Particles beyond the Standard Model (SM) can generically have lifetimes that are long compared to SM...
The detection of long-lived particles (LLPs) in high energy experiments are key for both the study o...
International audienceWe examine the theoretical motivations for long-lived particle (LLP) signals a...
We examine the theoretical motivations for long-lived particle (LLP) signals at the LHC in a compreh...
Many extensions of the Standard Model (SM) include particles that are neutral, weakly coupled, and l...
Many extensions of the Standard Model (SM) include particles that are neutral, weakly coupled, and l...
The observation of long-lived particles at the LHC would reveal physics beyond the Standard Model, c...
There are many theoretical motivations for long-lived particle (LLP) signals at the LHC in a compreh...
Many extensions of the Standard Model (SM) include particles that are neutral, weakly coupled, and l...
Particles beyond the Standard Model (SM) can generically have lifetimes that are long compared to SM...
Particles beyond the Standard Model (SM) can generically have lifetimes that are long compared to SM...
The detection of long-lived particles (LLPs) in high energy experiments are key for both the study o...
International audienceWe examine the theoretical motivations for long-lived particle (LLP) signals a...
We examine the theoretical motivations for long-lived particle (LLP) signals at the LHC in a compreh...
Many extensions of the Standard Model (SM) include particles that are neutral, weakly coupled, and l...
Many extensions of the Standard Model (SM) include particles that are neutral, weakly coupled, and l...
The observation of long-lived particles at the LHC would reveal physics beyond the Standard Model, c...
There are many theoretical motivations for long-lived particle (LLP) signals at the LHC in a compreh...
Many extensions of the Standard Model (SM) include particles that are neutral, weakly coupled, and l...
Particles beyond the Standard Model (SM) can generically have lifetimes that are long compared to SM...
Particles beyond the Standard Model (SM) can generically have lifetimes that are long compared to SM...
The detection of long-lived particles (LLPs) in high energy experiments are key for both the study o...